Articles Archive - 天美传媒 /de/blog/ The Telescope Reinvented Wed, 01 Jul 2026 08:46:14 +0000 de hourly 1 https://wordpress.org/?v=6.8.7 /wp-content/uploads/2023/12/cropped-unistellar-favicon-2-32x32.png Articles Archive - 天美传媒 /de/blog/ 32 32 3 Reasons to observe this month /de/blog/3-gruende-diesen-monat-zu-beobachten-maerz-2025/ Wed, 01 Jul 2026 06:00:00 +0000 /blog/3-gruende-diesen-monat-zu-beobachten-maerz-2025/ Entdecken Sie jeden Monat drei faszinierende Himmelsereignisse, die Sie mit Ihrem Unistellar-Teleskop beobachten k枚nnen.

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Das Sommerdreieck

 

Am August-Himmel hilft Ihnen eine markante geometrische Figur dabei, sich zu orientieren: das Sommerdreieck.

 

Dieser auch mit blo脽em Auge leicht erkennbare Sternenverband verbindet drei der hellsten Sterne am Himmel: Vega, Deneb und Altair.
Einige Vorschl盲ge, was Sie in dieser Region mit Ihrem Teleskop erkunden k枚nnen:

 

Der Schleiernebel im Sternbild Cygnus: eine riesige Struktur, ein 脺berrest einer Supernova. Einige Abschnitte sind besonders beeindruckend, darunter NGC 6992 und NGC 6960.

 

Der Schneeballnebel (NGC 7662) im Sternbild Aquila: ein eher unauff盲lliges Ziel, das nach etwa 10 Minuten Beobachtung sichtbar wird.

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M11: Ein Sternhaufen in der Scutum-Sternwolke

 

M11, der Wildentenhaufen, ist ein au脽ergew枚hnlich dichter offener Sternhaufen am n枚rdlichen Rand der Scutum-Sternwolke in der Sommermilchstra脽e. In mehr als 6.000 Lichtjahren Entfernung vermitteln mehrere tausend dicht beieinanderliegende Sterne den Eindruck einer kompakten, leuchtenden Wolke; durch ein Teleskop l枚st sich dieser 鈥濸seudokugelsternhaufen鈥 in eine Vielzahl heller Punkte auf und bietet schon in den ersten Minuten der Beobachtung einen spektakul盲ren Anblick.

 

M1 Crab Nebula

M11 : Bildnachweis Stuart Fort

NGC 6946 鈥 Die Feuerwerksgalaxie

 

Zwischen den Sternbildern Schwan und Kephas liegt NGC 6946, eine Spiralgalaxie, die den Spitznamen 鈥濬euerwerksgalaxie鈥 tr盲gt.
In nur einem Jahrhundert waren dort zehn von der Erde aus sichtbare Supernovae (explodierende Sterne am Ende ihres Lebens) zu beobachten 鈥 ein absoluter Rekord!

 

Ihre gewundenen Arme, r枚tlichen Farbt枚ne und Sternentstehungsgebiete machen sie zu einem faszinierenden, aber lichtschwachen Objekt: Ihr Teleskop wird etwas Zeit ben枚tigen, um ihre Struktur vollst盲ndig zu enth眉llen.

Fireworks Galaxy (NGC 6946)

NGC 6946 : Bildnachweis Stuart Fort

Bis zum n盲chsten Monat 鈥 dann gibt es weitere Gr眉nde, den Blick nach oben zu richten!

Viel Spa脽 beim Sternegucken mit 天美传媒.

Weiterf眉hrende Literatur

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

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Zwei gruselige Erscheinungen am Halloween-Himmel /de/blog/zwei-gruselige-erscheinungen-am-halloween-himmel/ Mon, 27 Oct 2025 19:27:47 +0000 /?post_type=blog&p=284092 Entdecken Sie jeden Monat drei faszinierende Himmelsereignisse, die Sie mit Ihrem Unistellar-Teleskop beobachten k枚nnen.

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Zwei furchterregende Himmelsobjekte n盲hern sich an diesem Halloween: der 枚stliche Schleiernebel und der Zauberernebel.

Wenn der Herbst 眉ber die n枚rdliche Hemisph盲re hereinbricht, offenbart der Nachthimmel zwei seiner geheimnisvollsten Wunder, die zu fl眉stern scheinen. Nehmen Sie in dieser Jahreszeit Ihr Teleskop zur Hand und lassen Sie Ihren Blick zu den Sternbildern Cygnus und Cepheus schweifen. Dort erwarten Sie zwei himmlische Schatten: der 枚stliche Schleiernebel (NGC 6992) und der Zauberernebel (NGC 7380).

Der Blutnebel einer kosmischen Witwe: der 枚stliche Schleiernebel

 

Der 枚stliche Schleiernebel sieht aus wie eine kosmische Wunde, eine Blutspur, die in der Dunkelheit des Weltalls schwebt. Diese leuchtende Wolke entstand vor etwa 5.000 Jahren durch den Tod eines Sterns und erstreckt sich wie die noch frische Narbe einer Sternexplosion 眉ber das Sternbild Cygnus. Als Teil eines riesigen Komplexes, der als Cygnus-Schleife bekannt ist, liegt sie neben dem Hexenbesen und dem Fledermausnebel und webt ein Gewebe aus himmlischem Schrecken in der Leere, wo Sch枚nheit und Zerst枚rung verschmelzen.

脰stlicher Schleiernebel: Bildnachweis: Derrick Pearce

Der Zauberer-Nebel: Die Ank眉ndigung eines Zauberspruchs, der aufgedeckt werden muss

 

Mit blo脽em Auge erscheint die Region Cepheus ruhig und unauff盲llig. Durch ein Teleskop jedoch kommt eine spektrale Form zum Vorschein: der Zauberer-Nebel (NGC 7380). Diese riesige Gas- und Staubwolke, die wie die Silhouette eines Zauberers in seiner Robe aussieht, der einen Zauber wirkt, scheint mit einem 眉berirdischen Glanz zu leuchten. Etwa 7.200 Lichtjahre entfernt ist der Nebel eine Wiege f眉r neu geborene Sterne, deren Strahlung seine gespenstischen S盲ulen und Falten formt.

 

Der sowohl beunruhigende als auch faszinierende Hexensternnebel scheint zwischen Dunkelheit und Flammen zu schweben … eine kosmische Erscheinung, die in ihrer Bewegung erstarrt ist. Dieses magische Schauspiel, das perfekt zum Halloween-Himmel passt, l盲sst sich am besten in klaren Herbstn盲chten beobachten.

NGC 7380: Bildnachweis Greg Warwick

Tipps zur Beobachtung

 

  • Beste Zeit: Oktober bis November, wenn Cygnus und Cepheus hoch am Abendhimmel stehen.
  • Dauer: Beobachten Sie 20 Minuten lang, damit das Teleskop gen眉gend Lichtsignale f眉r diese besonders schwachen Objekte sammeln kann.
  • 础耻蝉谤眉蝉迟耻苍驳: Unistellar-Teleskope sind daf眉r ideal geeignet.

Wenn Sie diesen Herbst mit Ihrem Teleskop den Himmel absuchen, halten Sie bei diesen unheimlichen Objekten inne. Der 枚stliche Schleiernebel und der Zauberernebel erinnern uns daran, dass sich einige Gestalten still zwischen den Sternen verstecken und auf diejenigen warten, die sich die Zeit nehmen, sie zu beobachten.

 

Klarer Himmel und viel Spa脽 beim Beobachten.

Viel Spa脽 beim Sternegucken mit 天美传媒.

Weiterf眉hrende Literatur

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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3 Gr眉nde, diesen Monat zu beobachten Halloween-Ausgabe /de/blog/3-grunde-diesen-monat-zu-beobachten-halloween-ausgabe/ Fri, 24 Oct 2025 07:35:29 +0000 /?post_type=blog&p=284066 Entdecken Sie jeden Monat drei faszinierende Himmelsereignisse, die Sie mit Ihrem Unistellar-Teleskop beobachten k枚nnen.

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Im Oktober wird es fr眉her dunkel, Nebel steigen auf und die Sterne scheinen sich zu vermehren. Es ist der Monat, in dem Fantasie und Wissenschaft verschmelzen 鈥 in dem jeder Lichtpunkt zu einem kosmischen R盲tsel wird.


An Halloween verwandelt sich der Himmel in eine seltsame Szenerie: Silhouetten von Zauberern, Sternengeistern und magischen Kugeln verstecken sich zwischen den Sternen … und es liegt an Ihnen, uns dabei zu helfen, sie zu entdecken.


Um Sie zu inspirieren, haben wir drei faszinierende Himmelsobjekte beobachtet, die die bevorstehende Ankunft von Halloween ank眉ndigen:

Das Gesicht eines Zauberers 鈥 NGC 7380

 

Verloren in der Konstellation des Cepheus scheint NGC 7380 鈥 mit dem Spitznamen 鈥瀂auberer-Nebel鈥 鈥 direkt aus einer alten Sage entsprungen zu sein.
Seine Struktur aus Gas und Staub, geformt von Sternwinden, offenbart ein geheimnisvolles Profil: eine Stirn, eine Nase, ein Bart … fast menschlich.


Dieser Nebel entstand erst vor wenigen Millionen Jahren und befindet sich noch immer im Umbruch: In seinem Inneren entstehen junge Sterne, deren Strahlung die umgebende Wolke zum Leuchten bringt. Unter einem klaren Herbsthimmel bietet er einen beeindruckenden Anblick 鈥 ein himmlischer Zauberer, eingefroren im Licht.

 

NGC 7380: Bildnachweis Stuart Fort

Der Geist von Mirach 鈥 NGC 404

 

In der Konstellation Andromeda, nur wenige Bogenminuten vom hellen Stern Mirach entfernt, verbirgt sich eine kleine Galaxie, die mit blo脽em Auge fast unsichtbar ist.


Sein schwaches Licht scheint sich mit dem seines strahlenden Nachbarn zu 眉berlagern und erzeugt so die Illusion einer geisterhaften Pr盲senz 鈥 daher auch sein eindringlicher Spitzname 鈥濭eist von Mirach鈥.


Diese elliptische Galaxie liegt etwa 10 Millionen Lichtjahre entfernt. An ihr ist nichts wirklich Be盲ngstigendes, aber sie zu beobachten ist eine Herausforderung: Man muss sie sorgf盲ltig vom hellen Halo von Mirach trennen. Wenn man das schafft, f眉hlt es sich an, als w眉rde man ein verborgenes Geheimnis aufdecken 鈥 einen Geist, der sich hinter einem Stern versteckt.

 

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NGC 404: Bildnachweis Pierre Auchatraire

Der Bubble-Nebel 鈥 NGC 7635

 

Begeben wir uns zu Cassiopeia, um eine der sch枚nsten Strukturen am tiefen Himmel zu bewundern: den Bubble Nebula (NGC 7635).


Auf den ersten Blick sieht es aus wie eine perfekte Kugel, die im Weltraum schwebt 鈥 eine kosmische Blase, die von den heftigen Winden eines massereichen Sterns aufgeblasen wird.


Aber im tr眉ben Licht des Oktobers f盲llt es schwer, darin nicht einen magischen Lichtball zu sehen, einen leuchtenden Zauber, der zwischen den Sternen schwebt.

Diese Gasblase mit einem Durchmesser von sieben Lichtjahren dehnt sich weiterhin langsam in die interstellare Leere aus. Ihr bl盲ulicher Umriss, der durch die umgebenden Gase hervorgehoben wird, erinnert an einen schlafenden Geist oder einen Hauch von Energie, der bereit ist, zu verfliegen.

M3

Bubble Nebula: Bildnachweis Yann-Michel Niquet

Jetzt sind Sie an der Reihe zu beobachten 鈥 schnappen Sie sich Ihre Teleskope und begleiten Sie uns auf dieser himmlischen Jagd vor Halloween!


In unserem n盲chsten Newsletter werden die besten Beobachtungen vorgestellt (mit Ihrer Erlaubnis).

Bis zum n盲chsten Monat mit weiteren Gr眉nden, nach oben zu schauen!

Viel Spa脽 beim Sternegucken mit 天美传媒.

Weiterf眉hrende Literatur

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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Titans Schatten /de/blog/titans-schatten/ Mon, 07 Jul 2025 09:15:23 +0000 /?post_type=blog&p=280769 In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Titans Schatten appeared first on 天美传媒.

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Zeuge des kosmischen Balletts von Saturn: Ein Sommer der fl眉chtigen Ereignisse

 

In diesem Sommer steht der Ringplanet Saturn im Mittelpunkt unseres Nachthimmels und bietet Amateurastronomen eine seltene Gelegenheit, faszinierende vor眉bergehende Ereignisse zu beobachten. Unter diesen Himmelsschauspielen versprechen die Schattentransite von Titan, dem gr枚脽ten Mond des Saturn, besonders fesselnd zu werden. So wie wir zuvor die Mondfinsternisse des Jupiters erforscht haben, bieten diese Saturnereignisse ein dynamisches Beobachtungserlebnis, das sich von Nacht zu Nacht 盲ndert.

Der Mond Titan erscheint vor dem Saturn in einer Aufnahme der NASA-Raumsonde Cassini. Kredit: NASA/JPL-Caltech/Space Science Institute

Kommende Titan-Schattentransite in Universalzeit (GMT)

 

Datum

Start

Mid-Transit

Ende

Mai 15

9:49

12:59

15:44

31. Mai

9:05

12:12

14:53

Juni 16

8:21

11:24

14:00

2. Juli

7:40

10:35

13:03

18. Juli

7:00

9:44

12:05

Aug. 3

6:25

8:52

11:04

Aug. 19

5:52

8:01

10:00

4. September

5:25

7:09

8:50

20. September

5:09

6:20

7:34

6. Oktober

5:32*

Start- und Endzeitpunkt sind die Zeiten, zu denen der Titan voll Der Schatten ist beim Eintritt in die Saturnscheibe zuerst und beim Austritt aus der Scheibe zuletzt sichtbar. * Voller Schatten auf der Scheibe nur in der Mitte des Transits (Quelle: Sky and Telescopes)

Die Wissenschaft hinter dem Spektakel

 

Diese Schattentransite entstehen aufgrund der einzigartigen Ausrichtung des Saturns, seiner Ringe und seiner Monde von unserem Blickwinkel auf der Erde aus. W盲hrend Saturn auf seiner 29,5-j盲hrigen Umlaufbahn um die Sonne voranschreitet, 盲ndert sich unser Blickwinkel. Manchmal sind die Ringe frontal zu sehen (wie 2018 oder 2033) und manchmal verschwinden sie praktisch, wie 2025 oder 2040, wenn die Erde in der Ebene der Ringe und Monde liegt. W盲hrend dieser ausgerichteten Perioden k枚nnen wir Monde und ihre Schatten beobachten, die das Gesicht des Planeten kreuzen. Es hei脽t also entweder jetzt oder in 15 Jahren!

Der Schatten von Titan ist aufgrund der Gr枚脽e des Mondes besonders auff盲llig – mit einem Durchmesser von 5.150 km ist er gr枚脽er als Merkur und nach Jupiters Ganymed der zweitgr枚脽te Mond in unserem Sonnensystem. Wenn Titan zwischen Saturn und der Sonne vorbeizieht (aus unserer Perspektive), erzeugt seine betr盲chtliche Gr枚脽e einen deutlich sichtbaren Schatten auf den Wolkengipfeln des Saturns.

Wenn Sie in diesem Sommer Ihr Teleskop auf Saturn richten, denken Sie daran, dass Sie Zeuge eines kosmischen Tanzes sind, der sich seit Milliarden von Jahren abspielt. Jeder Transit bietet eine einzigartige Gelegenheit, sich mit der Mechanik unseres Sonnensystems zu besch盲ftigen und die Sch枚nheit der Himmelsbewegung zu genie脽en.

Viel Spa脽 beim Beobachten!

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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Unistellar Community Included In Multiple Scientific Papers /de/blog/unistellar-citizen-astronomers-included-in-multiple-scientific-papers/ Tue, 27 Feb 2024 14:49:01 +0000 /blog/unistellar-citizen-astronomers-included-in-multiple-scientific-papers/ Did you know Unistellar Citizen Astronomers are often cited in published scientific papers? Find out how you can contribute too!

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Getting a paper published in a scientific journal is a major achievement for any scientist, giving them the chance to share the new discoveries they鈥檝e made. But you don鈥檛 need to have a fancy degree or work at a university to make scientific discoveries. With the right tools, anyone can contribute to science.

In just the past few years, Unistellar Citizen Astronomers have been recognized in multiple scientific publications on exoplanets, space missions and more. That comes thanks to the partnership between Unistellar and the SETI Institute, which gives astronomers access to Unistellar Network data for their research. As research grows in scope, astronomers simply don鈥檛 have the resources to make all the observations they need to understand our universe. That鈥檚 where Unistellar Network members come in.

A map of member locations around the globe.听

Our network is a worldwide community of Citizen Astronomers who use their Unistellar telescopes to collect astronomical data. Collaborating over social media and the messaging platform Slack, observers from different countries strategize ways to gather the best data on asteroids, comets, exoplanets and more. Recent successes include refining the shape of the Lucy mission target asteroid Eurybates and a record-breaking observation of the exoplanet Kepler-167 e.

Future observations can help astronomers discover new exoplanets, get better data on the size and orbit of potentially hazardous Near-Earth Asteroids, and keep an eye on ongoing space missions. Unistellar has lots of resources for Citizen Astronomers – plus, the ease-of-use of the Unistellar telescopes and dedicated app make doing Citizen Astronomy fun and approachable for anyone.

„With the Unistellar Citizen Astronomy community, there is always something new and fun to look at,鈥 says Unistellar Citizen Astronomer Georges Simard in Quebec. 鈥淚t is an incredible and easy way to learn about astronomy and contribute to real research projects.“

To learn more, check out our index of scientific publications featuring Unistellar Network contributions:

Index of Scientific Publications

Peer-Reviewed Articles

  • Sicardy, B., et al., Constraints on Trito atmospheric evolution from occultations: 1989-2022, A&A, in press, 2024 https://arxiv.org/abs/2402.02476

  • Graykowski, A. et al., Faint Comet Detection with Unistellar eVscopes,听 Research Notes of the AAS, Volume 8, Issue 2, id.41. , 2024 https://iopscience.iop.org/article/10.3847/2515-5172/ad25f9

  • Pereira, C. L. et al., the two Rings of (50000) Quaoar, A&A, 673 L4, 14, 2023

  • Graykowski, A. et al., Light Curves and Colours of the Ejecta from Dimorphos after the DART impact, Nature 6161, 5957, 461-464, 2023 https://www.nature.com/articles/s41586-023-05852-9

  • Yoshida, F. et al., Multi-chord observation of stellar occultation by the near-Earth asteroid (3200) Phaethon on October 3, 2021 (UTC) with very high accuracy, Publication of the Astronomical Society of Japan, 75, 1, 2023 https://academic.oup.com/pasj/article/75/1/153/6947807
  • Lambert, R. et al., Rotation Period Determination for (7335) 1989JA, Minor Planet Bulletin, 50,1, 16-17, 2023 https://articles.adsabs.harvard.edu/full/2023MPBu…50…16L
  • Peluso, D. O., et al., The Unistellar Exoplanet Campaign:听 Citizen Science Results and Inherent Education Opportunities, Publications of the Astronomical Society of the Pacific, 2135, 1043, 2023 https://www.nature.com/articles/s41586-023-05852-9
  • Perrocheau, A., 听A 16 Hour Transit of Kepler-167 e Observed by the Ground-based Unistellar Telescope Network. The Astrophysical Journal Letters听940.2 (2022): L39.
  • Cazeneuve, D., et al., ODNET, The Astrophysical Journal, 165, 1, 11, 2023 https://articles.adsabs.harvard.edu/full/2023MPBu…50…16L
  • Sibbernsen, K. 2022. Electronic telescopes and their use in astronomy education. The Physics Teacher, 60(5), 394.
  • Barbosa, D., Coelho, B., Bergano, M., Magalh茫es, C., Mendon莽a, D., Silva, D., Correia, A.C. M., Pandeirada, J., Ribeiro, V., Esposito, T., Marchis, F., 2022. Cyber-Cosmos: A new citizen science concept in a dark sky destination. Acta Astronaut. 200, 612鈥619.
  • Pearson, K.A., Beichman, C., Fulton, B.J., Esposito, T.M., Zellem, R.T., Ciardi, D.R., Rolfness, J., Engelke, J., Fatahi, T., Zimmerman-Brachman, R., Avsar, A., Bhalerao Varun, D., Boyce, P., Bretton, M., Burnett, A.D., Burt, J., Fowler, M., Gallego, D., Gomez, E., Guillet, B., Hilburn, J., Jongen, Y., Kataria, T., Kokori, A., Kumar, H., Kuossari, P., Lekkas, G., Marchini, A., Meneghelli, N., Ngeow, C.-C., Primm, M., Samantaray, S., Shimizu, M., Silvis, G., Sienkiewicz, F., Swain, V., Tan, J., Tock, K., Wagner, K., W眉nsche, A., 2022. Utilizing a global network of telescopes to update the ephemeris for the highly eccentric planet HD 80606 b and to ensure the efficient scheduling of JWST. The Astronomical Journal 164.5 (2022): 178.
  • Wang, X.-Y., Rice, M., Wang, S., Pu, B., Stef谩nsson, G., Mahadevan, S., Radzom, B., Giacalone, S., Wu, Z.-Y., Esposito, T.M., Dalba, P.A., Avsar, A., Holden, B., Skiff, B., Polakis, T., Voeller, K., Logsdon, S.E., Klusmeyer, J., Schweiker, H., Wu, D.-H., Beard, C., Dai, F., Lubin, J., Weiss, L.M., Bender, C.F., Blake, C.H., Dressing, C.D., Halverson, S., Hearty, F., Howard, A.W., Huber, D., Isaacson, H., Jackman, J.A. ~G., Llama, J., McElwain, M.W., Rajagopal, J., Roy, A., Robertson, P., Schwab, C., Shkolnik, E.L., Wright, J.T., Laughlin, G., 2022. The Aligned Orbit of WASP-148b, the Only Known Hot Jupiter with a nearby Warm Jupiter Companion, from NEID and HIRES. The Astrophysical Journal Letters听926, L8.
  • Dalba, P.A., Kane, S.R., Dragomir, D., Villanueva, S., Collins, K.A., Jacobs, T.L., LaCourse, D.M., Gagliano, R., Kristiansen, M.H., Omohundro, M., Schwengeler, H.M., Terentev, I.A., Vanderburg, A., Fulton, B., Isaacson, H., Van Zandt, J., Howard, A.W., Thorngren, D.P., Howell, S.B., Batalha, N.M., Chontos, A., Crossfield, I.J. M., Dressing, C.D., Huber, D., Petigura, E.A., Robertson, P., Roy, A., Weiss, L.M., Behmard, A., Beard, C., Brinkman, C.L., Giacalone, S., Hill, M.L., Lubin, J., Mayo, A.W., Mo膷nik, T., Akana Murphy, J.M., Polanski, A.S., Rice, M., Rosenthal, L.J., Rubenzahl, R.A., Scarsdale, N., Turtelboom, E. V, Tyler, D., Benni, P., Boyce, P., Esposito, T.M., Girardin, E., Laloum, D., Lewin, P., Mann, C.R., Marchis, F., Schwarz, R.P., Srdoc, G., Steuer, J., Sivarani, T., Unni, A., Eisner, N.L., Fetherolf, T., Li, Z., Yao, X., Pepper, J., Ricker, G.R., Vanderspek, R., Latham, D.W., Seager, S., Winn, J.N., Jenkins, J.M., Burke, C.J., Eastman, J.D., Lund, M.B., Rodriguez, D.R., Rowden, P., Ting, E.B., Villase帽or, J.N., 2022. The TESS-Keck Survey. VIII. Confirmation of a Transiting Giant Planet on an Eccentric 261 Day Orbit with the Automated Planet Finder Telescope. The Astronomical Journal. 163, 61.
  • Marchis, F., Malvache, A., Marfisi, L., Borot, A., Arbouch, E., 2020. Unistellar eVscopes: Smart, portable, and easy-to-use telescopes for exploration, interactive learning, and citizen astronomy. Acta Astronaut. 166, 23鈥28.
  • Zellem, R.T., Pearson, K.A., Blaser, E., Fowler, M., Ciardi, D.R., Biferno, A., Massey, B., Marchis, F., Baer, R., Ball, C., Chasin, M., Conley, M., Dixon, S., Fletcher, E., Hernandez, S., Nair, S., Perian, Q., Sienkiewicz, F., Tock, K., Vijayakumar, V., Swain, M.R., Roudier, G.M., Bryden, G., Conti, D.M., Hill, D.H., Hergenrother, C.W., Dussault, M., Kane, S.R., Fitzgerald, M., Boyce, P., Peticolas, L., Gee, W., Cominsky, L., Zimmerman-Brachman, R., Smith, D., Creech-Eakman, M.J., Engelke, J., Iturralde, A., Dragomir, D., Jovanovic, N., Lawton, B., Arbouch, E., Kuchner, M., Malvache, A., 2020. Utilizing Small Telescopes Operated by Citizen Scientists for Transiting Exoplanet Follow-up. Publ. Astron. Soc. Pacific 132, 054401.

Conference Proceedings

 

  • Marchis, F., Esposito, T., Lambert, R., Dalba, P., 2022. New Astronomy with the Unistellar Network, in: IAC 2022 Congress Proceedings, 73rd International Astronautical Congress (IAC), Paris, France.
  • Lambert, R. A., Marchis, F., Asencio, J., Blaclard, G., Sgro, L. A., Giorgini, J. D., Plavchan, P., White, T., Verveen, A., Goto, T., Kuossari, P., Sethu, N., Loose, M. A., Will, S., Sibbernsen, K., Pickering, J. W., Randolph, J., Fukui, K., Huet, P., Guillet, B., Clerget, O., Stahl, S., Yoblonsky, N., Lauvernier, M., Matsumura, T., Yamato, M., Laugier, J.-M., Brodt-Vilain, O., Espudo, A., Kukita, R., Iida, S., Kardel, S., Green, D., Tikkanen, P., Douvas, A., Billiani, M., Knight, G., Ryno, M., Simard, G., Knight, R., Primm, M., Wildhagen, B., Poncet, J., Frachon, T., Shimizu, M., Jackson, A., Parker, B., Redfern, G., Nikiforov, P., Friday, E., Lincoln, K., Sweitzer, J., Mitsuoka, R., Cabral, K., Katterfeld, A., Fairfax, M., 2022. Citizen science astronomy with a network of small telescopes: the launch and deployment of JWST, in: Marshall, H.K., Spyromilio, J., Usuda, T. (Eds.), Ground-Based and Airborne Telescopes IX, Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series. p. 121822Z.

  • Marchis, F., Esposito, T., Peluso, D., Blaclard, G., Asencio, J., Megowan-Romanowicz, C., Pennypacker, C., Carter, B., 2021. Outreach and scientific Results With The Largest Network of Backyard Astronomers 鈥 IAF Digital Library, in: IAC 2021 Congress Proceedings, 72nd International Astronautical Congress (IAC), Dubai, United Arab Emirates.
  • Barbosa, D., Coelho, B., Bergano, M., Magalh茫es, C., Mendon莽a, D., Silva, D., Correia, A., Pandeirada, J., Ribeiro, V., Esposito, T., Marchis, F., 2021. Cyber-Cosmos: a new Citizen science concept in a Dark Sky Destination 鈥 IAF Digital Library, in: IAC 2021 Congress Proceedings, 72nd International Astronautical Congress (IAC), Dubai, United Arab Emirates.

Conference Abstracts

  • Graykowski A., Lambert R. A., Marchis F., Cazeneuve D., Dalba P. A., et al. 2023. Citizen Science Observations of the Ejecta from Dimorphos after the DART Impact. in: Asteroids, Comets, Meteors Conference Abstracts. #2297
  • Graykowski, A., Lambert, R.A., Marchis, F., Esposito, T. M., Sgro, L. A., Weaver, I., Peluso, D. O鈥機., Dalba, P. A. 2023. Monitoring Variable Cometary Activity with Citizen Science Using the Unistellar Network. in: AAVSO 112 Annual Meeting Abstracts
  • Graykowski, A. and Marchis, F. 2023. Monitoring Cometary Activity and Characterizing the Outbursts of 29P/Schwassmann鈥揥achmann and 12P/Pons-Brooks using Citizen Science Observations. in: AGU Fall Meeting Abstracts. pp. P44B-07
  • Hanu拧, J et al., 2023 Stellar Occultation by Asteroids: the contribution of Unistellar’s network of citizen astromnomers, 55th Annual Meeting of the Division for Planetary Sciences, 312.04, Vol. 55,8
  • Bruno Guillet, Tom Esposito, Arin Avsar, Franck Marchis, Daniel Peluso, and 130 citizen astronomers, 2022. D茅tections d鈥檈xoplan猫tes par des astronomes amateurs du r茅seau Unistellar, Posters aux journ茅es 2022 de la SF2A, Besan莽on (France) Juin 2022
  • Bruno Guillet, Franck Marchis, Jo茅 Asencio, Ryan Lambert, Paul Dalba, Guillaume Blaclard, and several citizen astronomers, 2022. D茅tections d鈥檃st茅ro茂des et d鈥檈ngins spatiaux par des astronomes amateurs du r茅seau Unistellar,听 Posters aux journ茅es 2022 de la SF2A, Besan莽on (France) Juin 2022
  • Esposito, T., Avsar, A., Marchis, F., Dalba, P., Peluso, D., 2022. Hot and Cold Jupiters: Exoplanet Transit Results from the Unistellar Citizen Scientist Network, in: American Astronomical Society Meeting Abstracts, American Astronomical Society Meeting Abstracts. p. 339.07.

  • Hanus, J., Marchis, F., Asencio, J., Durech, J., 2021. Lightcurve observations of near-Earth asteroids with the Unistellar鈥檚 network of citizen astronomers, in: AGU Fall Meeting Abstracts. pp. SY55C-0361.

  • Marchis, F., Esposito, T., Asencio, J., Klavans, V., Blaclard, G., Peluso, D.O., Megowan-Romanowicz, C., Pennypacker, C., 2021. Citizen Science and Scientific Results from the Worlds Largest Network of Backyard Astronomers, in: AGU Fall Meeting Abstracts. pp. SY55A-04.
  • Hanus, J., Durech, J., Marchis, F., Asencio, J., Blaclard, G., 2021. Physical Properties of Near-Earth Asteroids, in: AGU Fall Meeting Abstracts. pp. P33A-02.

  • Cazeneuve, D., Marchis, F., Blaclard, G., Asencio, J., Martin, V., 2021. Detection of Occultation Events by Machine Learning for the Unistellar Network, in: AGU Fall Meeting Abstracts. pp. P11B-12.

  • Marchis, F., Asencio, J., Peluso, D., Durech, J., Vere拧, P., Blaclard, G., Demuys, I., Nachury, L., 2021. The Contribution of the Unistellar Network for Planetary Defense: Empowering Crowd-sourcing Astronomy, in: 7th IAA Planetary Defense Conference. p. 271.

  • Dunham, D., Dunham, J., Buie, M., Preston, S., Herald, D., Farnocchia, D., Giorgini, J., Arai, T., Sato, I., Nolthenius, R., Irwin, J., Degenhardt, S., Marshall, S., Moore, J., Whitehurst, S., Venable, R., Skrutskie, M., Marchis, F., Ye, Q., Tanga, P., Aissa, D.B., Grigahcene, Z., 2021. Accurate NEO Orbits from Occultation Observations, in: 7th IAA Planetary Defense Conference. p. 37.

  • Esposito, T. M., Avsar, A., Peluso, D., Marchis, F., Santana, P., Klavans, V., Nachury, L., 2021. TESS Planet Candidate Follow-up by Citizen Scientists in the Global Unistellar eVscope Network, in: Posters from the TESS Science Conference II (TSC2), held virtually, id.155. .

  • Marchis, F., Peluso, D., Esposito, T., Megowan-Romanowicz, C., Pennypacker, C., Unistellar Science Team, 2021. A Large Citizen Science Astronomy Network for All of Us, in: American Astronomical Society Meeting Abstracts, American Astronomical Society Meeting Abstracts. p. 412.06.
  • Esposito, T. M., Marchis, F., Peluso, D., Avsar, A., Zellem, R. T., 2021. Transiting Exoplanet Followup by Citizen Scientists with the Global Unistellar eVscope Network, in: American Astronomical Society Meeting Abstracts, American Astronomical Society Meeting Abstracts. p. 239.03.
  • Asencio, J., Marchis, F., Esposito, T., Veres, P., 2020. Planetary Defense With a Network of Compact, Smart and Low-Cost Digital Telescopes, in: AGU Fall Meeting Abstracts. pp. NH037-0008.
  • Marchis, F., Esposito, T., Asencio, J., Demuys, I., Peluso, D., Veres, P., Zellem, R., Nachury, L., 2020. Enabling and Empowering Citizen Science in Astronomy With a Network of Small Digital & Smart Telescopes, in: AGU Fall Meeting Abstracts. pp. ED025-06.

  • Marchis, F., Esposito, T., Asencio, J., Demuys, I., Peluso, D., Veres, P., Zellem, R., Hanus, J., Nachury, L., 2020. First Results With a Network of Small Digital & Smart Telescopes: Citizen Science For Astronomy, in: AAS/Division for Planetary Sciences Meeting Abstracts, AAS/Division for Planetary Sciences Meeting Abstracts. p. 413.02.

  • Marchis, F., Esposito, T., Malvache, A., Peluso, D., Vere拧, P., Hanu拧, J., 2020. Unistellar: The largest citizen science astronomy network for all of us 鈥 IAF Digital Library, in: IAC 2020 Congress Proceedings, 71st International Astronautical Congress (IAC) 鈥 IAC CyberSpace Edition , 12鈥14 October 2020.

  • Marchis, F., Arbouch, E., Peluso, D., Harman, P. K., Malvache, A., Bertin, E., Zellem, R., Veres, P., 2019. Citizen Science Astronomy with the Unistellar Network: From Planetary Defense to Exoplanet Transits, in: AGU Fall Meeting Abstracts. pp. ED14A-03.

  • Marchis, F., Arbouch, E., Bertin, E., Malvache, A., Vere拧, P., Zellem, R.T., 2019. Citizen Science Astronomy with the Unistellar Network: From Planetary Defense to Exoplanet Transits, in: EPSC-DPS Joint Meeting 2019. p. EPSC-DPS2019-898.

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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Neues Update der Unistellar-App: Version 3.0 /de/blog/new-app-update/ Thu, 11 Jan 2024 09:35:59 +0000 /blog/new-app-update/ The latest Unistellar App Update, version V3.0, is now live. 天美传媒 a smooth stargazing experience

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Wir freuen uns, Ihnen ein bedeutendes Update unserer Unistellar-App ank眉ndigen zu k枚nnen: Ab dem 3. Januar 2024 ist Version 3.0 verf眉gbar. Bei dieser Weiterentwicklung hat unsere Benutzeroberfl盲che ein neues Design erhalten. Mit dieser optischen Neuerung starten wir in eine neue 脛ra der Smart-Teleskope von Unistellar.

Im Mittelpunkt des Updates standen die 脺berarbeitung der Benutzeroberfl盲che und neue Funktionen, die das Benutzererlebnis verbessern. Damit schafft diese neue Version die Voraussetzungen f眉r k眉nftige Erweiterungen. Als Reaktion auf das Feedback unserer Community haben wir mehrere neue Funktionen umgesetzt. Im Folgenden m枚chten wir Ihnen drei dieser Neuerungen vorstellen:

1 – Intuitive Startseite

Hier finden Sie wichtige Informationen zu Ihrem Teleskop auf einen Blick, z. B. zu Akkustand, Speicher und Einstellungen. Stellen Sie schnell eine Verbindung mit WLAN her, greifen Sie bequem auf den Katalog zu, um Ihre abendliche Beobachtung zu beginnen, finden Sie heraus, welche wissenschaftlichen Missionen es in Ihrer N盲he gibt, und erhalten Sie umgehend Unterst眉tzung in unserem Hilfe-Center.

2 – Optimierte Mondbeobachtung

Dank der neuen Live-Bildverarbeitung erwartet Sie ein intensives Enhanced Vision-Erlebnis. Der Mond, der zu den 20 am h盲ufigsten beobachteten Objekten geh枚rt, l盲sst sich ab sofort nahezu immersiv beobachten.

3 – Nahtloses Navigieren

Wir haben die Beobachtungsansichten optimiert, also jenen Bereich der App, in dem Sie die meiste Zeit verbringen. Die neue Version der App zeigt alles Wesentliche, wobei das Navigieren durch einfaches horizontales Wischen reibungsloser erfolgt.

Jede dieser Verbesserungen zielt darauf ab, Ihre Beobachtungserfahrung angenehmer und effizienter zu gestalten. Laden Sie Version 3.0 jetzt aus dem Play Store oder App Store herunter und lesen Sie unseren umfassenden Leitfaden, den Sie in unserem finden. 听

Wenn Sie Fragen haben oder Unterst眉tzung ben枚tigen, wenden Sie sich bitte 眉ber das an unser Serviceteam.

Wir freuen uns darauf, Sie bei diesem neuen Abenteuer der Sternbeobachtung mit Unistellar zu begleiten!

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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Halloween Observing Guide: Spooky Deep-Sky Objects /de/blog/observe-october-2023/ Sat, 30 Sep 2023 03:03:36 +0000 /blog/observe-october-2023/ These Halloween deep-sky objects will add some light to those dark, spooky nights. Treats, tricks, and telescopes await!

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Step outside on a crisp October evening, and you’ll find the heavens adorned with celestial wonders that seem tailor-made for the Halloween season. From eerie-shaped clusters to cosmic apparitions, this month鈥檚 night-sky spectacles will send shivers down your spine.听

Follow our Halloween observing guide to enjoy some of these boo-tiful deep sky objects as you prepare for tricks, treats, and Unistellar telescopes!

 

All-Level Targets

These bright objects are easy for anyone to observe, and some are visible from both hemispheres!

Wizard Nebula (NGC 7380)

听If you鈥檝e ever noticed the 鈥渕an on the moon,鈥 you鈥檒l be glad to meet the wizard in the clouds! Clouds of cosmic gas and dust, that is. With its wispy tendrils, the Wizard Nebula cradles a young star cluster that has been forming from the material that makes up this star-forging region. These new stars have carved out a shape in the surrounding nebula that appears to be a wicked wizard鈥檚 face. Can you see it? Try from the Northern Hemisphere!

The Wizard Nebula imaged and processed by John Bradley.

Tarantula Nebula

The Tarantula Nebula, residing in the Large Magellanic Cloud galaxy, might give you astronomical arachnophobia. This vast cloud of gas and dust is illuminated by the fierce light of some of the hottest and most massive new stars known to us humans. The stars‘ powerful radiation clears out all but the most dense clouds and casts an eerie, spider-like silhouette against the cosmic canvas. Spot this creepy creature from the Southern Hemisphere.

Tarantula Nebula

The Tarantula Nebula, imaged by the Unistellar team.

Ghost Bush Cluster (NGC 6939)

The Ghost Bush Cluster, NGC 6939, is an open star cluster located in the constellation Cepheus and is best seen from the Northern Hemisphere. It鈥檚 quite an old open cluster at over 1 billion years of age, but it and its nearby neighbor – the Fireworks Galaxy – still make a striking pair.听

Why is it sometimes called the Ghost Bush Cluster? Well, Halloween is for mysteries after all. Likely it was named for the stunning (but slightly spooky) plant!

Eagle

The Ghost Bush Cluster imaged by Unistellar observer Michel Dubeau.

Owl Cluster (aka E.T. Cluster)

The E.T. cluster, better known as the Owl Cluster, is an open cluster in the constellation Cassiopeia. Its brightest stars might remind you of the eyes of an owl, or if you鈥檝e been hanging around SETI Institute scientists, those of a certain extraterrestrial from the movie E.T. Best viewed from the Northern hemisphere. See what you think! Is it avian or other-worldly?

The Owl/E.T. Cluster imaged and processed by Richard Bright.

Mirach鈥檚 Ghost

Mirach’s Ghost is an intriguing celestial duo located in the constellation Andromeda. This ethereal pairing consists of Mirach, the brightest star in Andromeda, and a faint, ghostly dwarf galaxy named NGC 404. Take a dark October night to gaze upon Mirach and catch a glimpse of its spectral companion! To spot it, simply use the Unistellar App to GoTo Mirach – you will see NGC 404 lurking next to the bright star it in the field of view.

Mirach imaged by David Rowe. You can see the fuzzy-looking Mirach’s Ghost, NGC 404, above the star and to the left!

There’s plenty of other great targets to see this month, creepy or not! From the Northern Hemisphere, check out the White Rose Cluster, often called Caroline’s Rose or the Ghost Cluster. In the Southern Hemisphere you can see the Bat Nebula in the later half of the night!

Challenge Targets

For more challenging targets, find these next few frightening objects! These are dimmer or more diffuse celestial sights that you may need to observe via Enhanced Vision for longer than the All-level targets if you want to experience their full, eerie effects.

Superman Galaxy (NGC 7479)

Not all things Halloween have to be scary! NGC 7479, affectionately dubbed the Superman Galaxy due to its distinctive ‚S‘ shape, is a barred spiral galaxy located in the constellation Pegasus. This cosmic superhero showcases its stunning, nearly symmetrical spiral arms, making it a heroic sight in the night sky. Also known as the Propeller Galaxy, it’s perfect for thrill-seeking stargazers in both hemispheres.

The Superman Galaxy imaged and processed by Unistellar observer John Short.

Skull Nebula (NGC 246)

This ghoulish nebula from the Cetus constellation is a Southern Hemisphere favorite. It鈥檚 a planetary nebula, meaning it was born from a dying sun-like star 鈥 but that鈥檚 not why it鈥檚 called the Skull Nebula! Although somewhat faint, a bit of time on target will reveal what some see as the shape of a spooky skull or a ghostly 鈥淧ac-Man.鈥

The Skull Nebula, imaged by Unistellar observer David Hein.

The Bubble Nebula (NGC 7635)

The Bubble Nebula, also known as NGC 7635, is an emission nebula found in the constellation Cassiopeia. Although not traditionally terrifying, its ethereal, bubble-like appearance, formed by the stellar winds of a massive star at its center, invokes mystical ambiance fitting for October nights in the Northern Hemisphere. Perhaps they are bubbles from a cosmic cauldron!听

A composite image of the Bubble Nebula by the Unistellar Team.

 

We encourage you to share your Halloween-time observations and join the conversation through our Facebook, Instagram and Twitter pages. Don’t forget to tag @Unistellar!

If you鈥檇 like to send us your observations by email, send them tocommunity@unistellaroptics.com.

Clear skies and stay spooky!馃敪

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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Fall Into Cygnus and More With September Deep-Sky Objects /de/blog/observe-september-2023/ Wed, 30 Aug 2023 15:50:03 +0000 /blog/observe-september-2023/ Unistellar鈥檚 September targets include a bevy of star clusters and nebulae of all sorts. Celebrate stars in all stages of life this month!

The post Fall Into Cygnus and More With September Deep-Sky Objects appeared first on 天美传媒.

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A new month brings a new crop of celestial wonders for astronomers everywhere to view. This September brings a flurry of nebulae and star clusters with it, meaning you鈥檒l be able to get your fill of stars in all stages of life this month! We鈥檝e got some of each for you to find with your Unistellar Telescope, including one cluster with a curiously missing centerpiece.

Many of these September sights lie in the constellation Cygnus the Swan, which hosts a rich tapestry of deep sky objects due to its location on the galactic plane. This stellar pattern is one of the Northern hemispheres鈥 high-in-the-sky Autumn gems, but is still visible for some Southern hemisphere observers (it will be quite low on the horizon for those at very Southern latitudes). So let鈥檚 dive into the Swan and its neighbors to visit the fascinating targets that this month has to offer.

All-Level Targets

These bright objects are easy for anyone to observe, and many are visible from both hemispheres!

Albireo

Turn your telescope to the head of Cygnus the Swan, the gleaming double star Albireo. The two stars that make up this pair appear with different colors through a telescope, as one is much hotter than the Sun and one much cooler.听

Because this star is so bright, you can choose whether or not to use Enhanced Vision. If you want to see the clear separation between the stars, you may instead use the 鈥淓dit鈥 button at the bottom of your live view screen to reduce the Gain and Exposure time of the image. This will allow you to better tell the stars apart.

Albireo captured by David Rowe with Enhanced Vision.

M39

Find this open cluster in the constellation of Cygnus. It鈥檚 near the bright star Deneb, the tail of the Swan, which can be helpful for locating the cluster. M39 is part of both the Northern Cross and the Southern Triangle – two of the most well-known asterisms in each hemisphere!

Eagle

M39 imaged by Unistellar observer Michel Dubeau.

Cocoon Nebula听

Sitting at the edge of Cygnus the Swan, the folds of the Cocoon Nebula shelter a region of young and still-forming stars that burns brightly. Peer closely into this forge of star creation and imagine the fiery conditions within.

The Cocoon Nebula imaged and processed by David Rowe.

Angelfish Cluster (M71)

Visible from both hemispheres, the Angelfish Cluster in Sagitta straddles the line between an open cluster and a globular cluster. The difference between these two types of cluster is namely their age and concentration of stars – open clusters are not as dense and contain younger stars, while globular clusters contain older, densely packed stars. Scientists eventually settled on designating the Angelfish as a young, loosely concentrated globular cluster. See what you think!

The Angelfish Cluster, imaged by Unistellar observer Emmanuel Marchal.

Summer Beehive (IC 4665)

Not to be confused with the well-loved Beehive Cluster of the constellation Cancer, the Summer Beehive Cluster lies in Ophiucus. This lovely open cluster is often called Poseidon’s Trident Cluster – can you spot this familar shape? Catch it as soon as dark falls from both hemispheres.听

The Sumer Beehive imaged and processed by John Bradley.

There’s plenty of other great targets to see this month. For example, both the Fireworks Galaxy and the Veil Nebula are primely placed in Cygnus, and other dim nebulae like the Little Ring Nebula (NGC 6894) may pose a fun challenge. Check you Unistellar app catalog to see what’s up in the sky!

Challenge Targets

For more challenging targets, find these next three objects! These are dimmer or more diffuse celestial sights that you may need to observe via Enhanced Vision for longer than the ones in the previous section if you want to see all them in all their glory!

The Hole in the Cluster (NGC 6811)

Also known as NGC 6811, this open cluster in Cygnus contains a mysterious absence of stars near its very center. See if you can spot this dim 鈥渟moke ring of stars,鈥 and ponder the inky blackness of space!

The Hole in The Cluster imaged by the Unistellar team.

Crescent Nebula (NGC 6888)

At the heart of this emission nebula, which also lies in Cygnus, you鈥檒l find a rare Wolf-Rayet star – a massive star that鈥檚 been living fast and is on its way to dying hard as it burns heavier elements for fuel after it used up all of its hydrogen. This star emits strong stellar winds that whip the clouds of gas and dust in the Crescent Nebula into complex shapes. After several minutes of Enhanced Vision, you should see its half-circle structure begin to appear!

The Crescent Nebula imaged and processed by Matthieu Carbon.

Iris Nebula (NGC 7023)

This reflection nebula glows from within, lit from a star hidden by its gaseous shrouds. Filaments of red indicate an unknown molecule in the Iris Nebula鈥檚 clouds, which stretch about six light-years across. This nebula is in the constellation Cepheus, so it’s best seen from the Northern Hemisphere.

The Iris Nebula imaged and processed by Richard Bright.

NGC 6951

For an additional challenge, look for this barred spiral galaxy in the constellation of Cepheus. Persistence will reward you with views of a less-often-spotted galaxy with a distinct shape that鈥檚 home to active star formation. Only visible from the Northern Hemisphere.

NGC 6951 imaged by Jacques B茅rard & Nicole Ruel back in 2021, when a supernova was spotted to have erupted in this galaxy!

 

We encourage you to share your observations and join the conversation through our Facebook, Instagram and Twitter pages. Don’t forget to tag @Unistellar!

If you鈥檇 like to send us your observations by email, send them tocommunity@unistellaroptics.com.

Clear skies!馃敪

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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See Newfound Comet Nishimura Before it’s Too Late! /de/blog/comet-nishimura-2023/ Tue, 29 Aug 2023 20:45:15 +0000 /blog/comet-nishimura-2/ Catch newly discovered comet C/2023 P1 (Nishimura) before it flies too close to the Sun and potentially disintegrates!

The post See Newfound Comet Nishimura Before it’s Too Late! appeared first on 天美传媒.

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A brand new comet is showing off in the night sky! On the evening of August 11-12th, Japanese amateur astronomer Hideo Nishimura was watching the skies with his digital camera set up when a yet undiscovered comet graced his lens. This new comet, C/2023 P1 (Nishimura), bears his name as a result. Not only is this discovery an inspiration for amateur astronomers everywhere, but C/2023 P1 (Nishimura) 鈥 or Comet Nishimura for short 鈥 is a fascinating target for early risers in the Northern Hemisphere.

Comet Nishimura captured by Keiichi Fukui (Japan) with his Unistellar telescope.

Comet Nishimura Flies Close to the Sun

This newfound comet is getting brighter as it nears its close approach to Earth on September 12, so now is the perfect time to watch it soar through the sky 鈥 by the time it鈥檚 nearest to Earth, it will be quite low on the horizon. You鈥檒l have to get up early to spot it, as you can see it best in the hours before dawn, but it is well worth the loss of a little sleep!

„Comet Nishimura is quickly brightening in the morning sky and may be visible with the naked eye next month,鈥 says Dr. Franck Marchis, Chief Science Officer of Unistellar and Senior Planetary Astronomer with the SETI Institute. 鈥滱s summer draws to a close, Comet Nishimura provides a splendid astronomical gift. Presently, it displays a captivating greenish coma, and its activity is expected to intensify as it nears its closest approach to the Sun on September 17. Be sure to gaze skyward at dawn, and take your telescope out to truly enjoy this celestial wanderer.鈥

Comet Nishimura imaged and processed by Unistellar observer Anouchka N.

As Comet Nishimura gets brighter, it may indeed become a binocular object or even a naked-eye sight to those in dark skies. Predictions show it could reach 2nd magnitude (about the brightness of Polaris, the North Star) during its Solar approach, when it will be closer to the Sun than Mercury. By then, however, Comet Nishimura will be so close to the Sun that it will be difficult to see. So it鈥檚 best to get your observations in while you still can! Especially since Comet Nishimura is sweeping so close to our star that its nucleus (the comet鈥檚 icy core) may break up and in that case, it will be gone for good.听

Observing Comet Nishimura now could certainly pay off – as the comet nears the Sun, it may show increases in activity and even an outburst, like in the case of Comet Pons-Brooks. Members of the Unistellar Network stand a chance to witness such an outburst or, with some luck, even its disintegration. So take a bet on Comet Nishimura and point your telescope upwards while you still can!

Comet Nishimura through an eVscope live view (top), via Enhanced Vision (left) and with Nocturne (right). Captured by Aad Verveen (Netherlands).

How Can You Observe Comet Nishimura?

Even though comet C/2023 P1 (Nishimura) was just discovered this month, you can still find it easily! Right now, it is visible to Northern Hemisphere observers, although it will become observable to the Southern Hemisphere in November if it survives its proximity to the Sun. Comet Nishimura is not in the Unistellar App catalog, but all you need to do is visit our Comet Ephemeris Page to contribute to this mission:

  • Once on the page, in the Ephemeris Parameters section, select C/2023 P1 (Nishimura) as your target and enter the location where you鈥檒l be observing, as well as the date and local time.听
  • Click on Generate to get your results. After a few seconds, the Ephemeris Results section will be generated with a list of celestial coordinates for your night. Each line corresponds to the position of your target at a specific time.
  • If Comet Nishimura is visible from your location, you will be able to click on the smartphone icon (containing a Deep Link) that will open your Unistellar App and fill the Cometary Activity section with the proper fields. If your target is not visible, a crossed-out eye icon will appear.听
  • When you are ready to observe, access the Comet Ephemeris Page from your phone or tablet. Then, click the Deep Link for your observing time. It will automatically open the Cometary Activity tab of Science Mode in your Unistellar App. If the Right ascension and Declination box are filled with the correct coordinates, click on Goto to point to your target.听
  • To make a Science Observation: Once Goto is done, if the Record duration, Exposure time, and Gain are correct, you can click on Save. For this target, Record duration = 20 min, Exposure time = 3971 ms, and Gain = 25 dB.听
  • When you are ready, click on the Record button to start the observation.

And that鈥檚 it 鈥 you can always visit our Comets Tutorial page for more guidance on how to make your observation for this comet that is NOT in the App Catalog. If you have any questions regarding this process, direct them to citizenscience@unistellaroptics.com. Happy comet watching!

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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What is the Difference Between a Comet and an Asteroid? /de/blog/comets-vs-asteroids/ Wed, 19 Jul 2023 02:44:24 +0000 /blog/comets-vs-asteroids/ There are countless comets and asteroids swirling about in space. But what makes them different from each other?

The post What is the Difference Between a Comet and an Asteroid? appeared first on 天美传媒.

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Among the rocky and ringed planets in our Solar System are countless small objects whirling around the Sun. These objects fall into two broad categories: asteroids and comets. The difference between comets and asteroids largely comes down to composition. Comets are made of ice and rock, and asteroids are made of rock and metal. However, both these bits of rock and ice and metal are left overs from the formation of the planets 4.6 billion years ago 鈥 which is why some scientists refer to them affectionately as 鈥渟pace junk.鈥

Comets are also sometimes called 鈥渄irty snowballs鈥 because they鈥檙e usually conglomerations of ice and rocks, and often covered in dark dust. Asteroids are divided into many different types based on what they鈥檙e made of, which can be rock, metal, or a combination of the two. The distinction between the objects is due to where they originate: comets formed farther out in the Solar System, where their ices could stay solid due to the cold temperatures, whereas asteroids formed in a warmer environment closer to the Sun.

The makeup of the Solar System. Many asteroids reside in the asteroid belt between Saturn and Jupiter, while comets tend to orbit from the outer reaches of our planetary system – the Kuiper belt and beyond. Credit: NASA

Seeing comets vs asteroids from Earth

Both asteroids and comets are occasionally visible from Earth, though without a telescope, you can typically only see bright comets, like Halley鈥檚 Comet, last seen in 1986. Comets are so often visible outside our atmosphere because they have a long dust tail, formed when dust is released from the comet鈥檚 core as ices turn to gas near the Sun. That dust then trails off as the comet flies through space and can stretch for millions of kilometers!听

However, pieces of both asteroids and comets can become naked-eye sights if they fall into Earth鈥檚 atmosphere. The blaze of light these objects leave as they burn up is called a meteor, and if we find these objects on the ground later, we call them meteorites. Meteor showers, which happen regularly each year, occur when the Earth鈥檚 orbit passes through a cloud of debris from a comet or asteroid (typically a comet). As we pass through that debris field, tiny pieces of it burn up in our atmosphere and leave a flurry of streaks.

Crowd-sourced observations of the Comet ATLAS from Unistellar Network members in Europe on April 11, 2020. The tail makes the comet highly visible!

Observing comets and asteroids with Unistellar

Both comets and asteroids are visible with a Unistellar Telescope, and we regularly update our network when one might be visible. Unistellar observers are invited to seek out these objects, and even submit their observations that help astronomers studying this 鈥渟pace junk.鈥 In 2022 alone, our network made 1,449 observations of nine different comets and 985 observations of 32 near-Earth asteroids! That included observing the history-making Double Asteroid Redirection Test (DART) mission to crash a spacecraft into an asteroid, as well as a target of the Lucy mission.

Professional and amateur astronomers study asteroids to better understand their size and orbit, which can be very important for Potentially Hazardous Asteroids that might pose a threat to our planet. In the case of comets, skygazers keep an eye on them to track their activity as they travel near and away from the Sun.

Both teach astronomers about the earliest stages of our Solar System, since they serve as time capsules from those formative years. So perhaps they are not 鈥渟pace junk,鈥 but rather, 鈥渟pace treasure鈥 鈥 and you can observe both these types of treasures with the Unistellar Network!

Further readings

Titans Schatten

In diesem Sommer r眉ckt der Ringplanet Saturn an unserem Nachthimmel in den Vordergrund und bietet Amateurastronomen die seltene Gelegenheit, faszinierende transiente Ereignisse zu beobachten.

The post Neues Update der Unistellar-App: Version 3.0 appeared first on 天美传媒.

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