Showing posts with label Galilean moons. Show all posts
Showing posts with label Galilean moons. Show all posts

Sunday, January 22, 2012

Understanding Jovian Eclipses

[This article concerns Jovian eclipses, not transits. Although a Jovian eclipse can mean the same thing as a transit in this sense, this article talks about the disappearance and reappearance of the Jovian moons, not the transit of Jupiter’s surface.]

Considered the most intriguing and fascinating astronomical phenomena yet, the eclipse is highly acclaimed not just here on earth, but also in the rest of our solar-system. When a celestial body passes into the shadow of another body, preferably larger; or an object casts a shadow upon another, an eclipse is formed. From there, the term ‘eclipse’ can be forwarded into two separate definitions: the solar eclipse, or the lunar eclipse. When the Moon passes in front of the Sun, respectively on the ecliptic, a shadow is cast upon the earth; a solar eclipse is formed. When the Moon passes into either the umbral or penumbral shadow of the earth, again respectively on the ecliptic; a lunar eclipse occurs. Although these definitions discreetly define actions in a terrestrial sense, these same exact phenomena occur on the other seven planets in our vast solar-system, but with another name.

When an object passes into the shadow cone of Jupiter, it disappears from view (note the striped moon to represent being eclipsed instead of being solid colored, not eclipsed)
The Jovian Eclipse is perhaps one of the most unique extraterrestrial happenings, for it involves one of the many Jovian moons, mainly the Galilean moons, Jupiter, and the Sun; rather just the Moon and earth. Because a solar eclipse and a lunar eclipse have terrestrial definitions and terms, therefore, a Jovian Eclipse is defined as “the passing of a Jovian moon into the shadow-cone of Jupiter where it is eclipsed out of sight, until reappearing.” These eclipses can be total, in which the eclipsed moon is eclipsed indefinitely; or partial, where the eclipsed moon is partially eclipsed. But, you must make note that the Galilean moons (the four most famous moons, which we do know to eclipse) have very little orbital inclinations. With Io, having an inclination of 0.050º, Europa with 0.471º, Ganymede with 0.204º, and Callisto with 0.205º, it is doubted that partial eclipses can occur, because each of the moons’ orbits are so perfectly aligned with Jupiter’s equator; therefore, no partial eclipses. Aside from the types of Jovian eclipses that occur, series of eclipses take place, nevertheless imitating ‘Saros’ here on the earth. Because the moons that do eclipse are rather diminutive compared to Jupiter itself, an observer on Jupiter would not notice much, so a Jovian observer would consider a Jovian eclipse as a phenomena of theoretical interest, or something unimportant to note. Nevertheless, the Jovian moons’ ‘Saros’ is pure academic interest as well.

Seeing a Galilean moon eclipse is an enchanting experience you won’t forget. But, certain requirements are needed for you to observe one; it’s hard for Jupiter to produce such key-viewing times, like the one in 1999. “Jupiter and Saturn returned to the sky in autumn of that year; Jupiter was at its best to view in a long time. Jupiter and its moons were easily observed with a small telescope, and two of three phenomena could easily be seen. Transits and occultations were easy to see, but not so much for eclipses. That’s what makes eclipses so amazing,” Matthew Winter writes from Astronomical Events: Eclipses, Transits, Occultations, and Conjunctions. In order for Jupiter to produce a good eclipse viewing season, it first must be at either eastern or western quadrature. Quadrature is simply a fancy term for the time when a planet forms a right triangle with the earth and Sun. Western Quadrature occurs when the planet is towards the west of earth, and Eastern Quadrature is vice versa. Jupiter forms a twelve degree angle on its end, while the ninety degree angle is on earth’s end. Then, we are able to see the moons eclipse in and out of Jupiter’s shadow cone, rather than at opposition. At opposition, when the earth, Sun, and the planet of note (Jupiter) are all aligned in a straight line, Jupiter’s shadow cone is behind the planet, making eclipses invisible from earth. Precise timings are location is everything in viewing a Jovian eclipse. “Because its shadow cast is very magnificent, when a Galilean moon passes behind it, it disappears completely from view, but has not been occulted. As well as that, because the shadow cast is so steep, the Galilean moons may be viewed entering and exiting the shadow on the same side of the planet!,” from Astronomical Events: Eclipses, Transits, Occultations, and Conjunctions.

Jupiter’s shadow cone is brought into our view at quadrature, it’s not at opposition, which is when Jupiter would make the earth, Sun, and Jupiter in a straight line.
August 1, 2011 brings us to Jupiter’s Western Qudarature, which is a key time to view these events. Around west quadrature, Jupiter rises beautifully in the east around midnight and shines high up at dawn. But mind you, Jupiter takes over eight years to orbit, so returning to Eastern Quadrature will take a few years, so patience is a good aspect in waiting for the return of the Jovian eclipses.  Returning to 1999, Capitol Skies (the newsletter of the Madison Astronomical Society) tells us this about the Jovian eclipses during that epic season. “Jupiter provides a virtual smorgasbord of events to watch. Of the three events, eclipses are by far the most scientifically interesting, because the timing of the precise disappearances and reappearances of the moons can be used to calculate orbital elements of the moons. For this reason, precise timings of the Galilean moon eclipses are sought by the Association of Lunar and Planetary Observers (ALPO).” You can visit a myriad of online resources to locate the times of Jovian eclipses, for what more is there to miss? A moon may be eclipsing now!

Here is a basic explanatory site of Jupiter’s phenomena:

Galilean moons simulator from the Transits Page (click ‘now’ for most current events):

[To download the Word Document of this story, come to this page where it can be downloaded.] 
 
http://astronomicaleventscalendar.blogspot.com/2011/08/understanding-jovian-eclipses.html 

Thursday, January 12, 2012

Single Phenomena 2012: The Truth Behind Them

What are single phenomena of Jupiter's satellites and how can this occur? These commonly asked questions about single phenomena are inevitable to every person, and should be all summed up in this article.  Single phenomena are beautiful flourishes of every Jovian event calendar, and should remain that way, for their intrinsic values are not that complex at all. Appropriately defined, single phenomena of Jupiter's moon is "an event of the Galilean moons when one moon is the only one visible, the others either occulted or in transit." And this will occur eleven times, divided into two periods, in 2012.

The first period of single phenomena is in January, with five events in a little over two weeks. Callisto (as for all of the 2012 single phenomena) is the only moon present (partially becasue its orbit is so big, rarely it is in transit or in occultation), while the other three, Io, Europa, and Ganymede are not. The next period takes place in the end of July and is finished around Mid-August. These comprise the rest (six) of the phenomena.
Below is a table of these eleven events for 2012.

You can configure what these would appear to be at the Galilean Moons Simulator; just plug in the time and date into the simulation. NOTE: The times in the chart are in TDT. Galilean Moons Simulator computes only in UTC. Conversion: http://www.csgnetwork.com/timetdtdispcalc.html (TDT is about a minute or two ahead of UTC).
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With references from http://www.pierpaoloricci.it/eventi/giove1sat_eng.htm

Saturday, January 7, 2012

2012 Calculations of Dual-Transits are Finally Here!

Thanks to the Transits Page, the 2012 results are finally here! "During 2012 Earth experiences 18 dual satellite and 17 dual shadow transits of Galilean satellites of Jupiter," opens the document. (For comparison, 2011 has 18 dual-satellite but 20 dual shadow.)

http://transit.savage-garden.org/en/horizons/gsst2012.pdf

Longest Dual Transit = 2012 Jul 28 = 02h 02m (Io and Europa)
Shortest Dual Transit = 2012 Jul 10 = 00h 00m (Io and Europa)

Longest Dual Shadow Transit = 2012 Jul 28 = 02h 01m (Io and Ganymede)
Shortest Dual Shadow Transit = 2012 Aug 18 = 00h 08m (Io and Europa)
_____________________________________

Dual Transits

Begin           End               Duration           Satellites

Jan-11 06:24 Jan-11 06:47 00:23 Europa Ganymede
Jan-18 08:57 Jan-18 10:45 01:48 Europa Ganymede
Jan-25 12:38 Jan-25 14:03 01:25 Europa Ganymede
Mar-23 00:30 Mar-23 01:08 00:38 Io Ganymede
Mar-30 03:24 Mar-30 04:43 01:19 Io Ganymede
Jul-10 19:54 Jul-10 19:54 00:00 Io Europa
Jul-14 08:54 Jul-14 09:19 00:25 Io Europa
Jul-17 21:53 Jul-17 22:42 00:49 Io Europa
Jul-21 10:53 Jul-21 12:06 01:13 Io Europa
Jul-24 23:52 Jul-25 01:30 01:38 Io Europa
Jul-28 12:51 Jul-28 14:53 02:02 Io Europa
Jul-30 07:26 Jul-30 09:21 01:55 Io Ganymede
Aug-01 01:52 Aug-01 04:00 02:08 Io Europa
Aug-04 15:16 Aug-04 16:59 01:43 Io Europa
Aug-08 04:37 Aug-08 05:57 01:20 Io Europa
Aug-11 18:00 Aug-11 18:56 00:56 Io Europa
Aug-15 07:21 Aug-15 07:54 00:33 Io Europa
Aug-18 20:43 Aug-18 20:52 00:09 Io Europa

Dual Shadow Transits

Begin        End           Duration       Satellites

Jan-11 06:25 Jan-11 06:45 00:20 Europa Ganymede
Jan-18 08:58 Jan-18 10:43 01:45 Europa Ganymede
Jan-25 12:40 Jan-25 14:02 01:22 Europa Ganymede
Mar-23 00:30 Mar-23 01:06 00:36 Io Ganymede
Mar-30 03:27 Mar-30 04:43 01:16 Io Ganymede
Jul-14 08:54 Jul-14 09:18 00:24 Io Europa
Jul-17 21:54 Jul-17 22:41 00:47 Io Europa
Jul-21 10:53 Jul-21 12:06 01:13 Io Europa
Jul-24 23:52 Jul-25 01:29 01:37 Io Europa
Jul-28 12:51 Jul-28 14:52 02:01 Io Europa
Jul-30 07:29 Jul-30 09:19 01:50 Io Ganymede
Aug-01 01:53 Aug-01 03:59 02:06 Io Europa
Aug-04 15:16 Aug-04 16:58 01:42 Io Europa
Aug-08 04:38 Aug-08 05:57 01:19 Io Europa
Aug-11 18:01 Aug-11 18:55 00:54 Io Europa
Aug-15 07:22 Aug-15 07:53 00:31 Io Europa
Aug-18 20:43 Aug-18 20:51 00:08 Io Europa

Wednesday, November 2, 2011

Jupiter and the Autumn 2011 Dual-Shadow Transits

Report covering each transit (October 24 & 31 2011) that occurred in the Autumn of 2011. Below is the abstract or more appropriately the introduction. Come to this link to download!!

Presumably a few of the most acclaimed and magnificent extra-planetary phenomena noted yet, Jovian dual-transits are the treat that every amateur and professional astronomer enjoys to observe, because of the sheer elegance of a dance of two moons across the luminous surface of their beloved parent: Jupiter. After the multitude of dual-transits that occurred over May and June of 2011, the next transits observed were rather special and oblique compared to those in May and June. Io and Ganymede did their share in both events—each separated a week apart, therefore falling on October 24, 2011 and October 31, 2011. Callisto transited only once this year, in January with Europa, which mainly transited in May and June. Yet, we had been granted again with more morsels—perfectly falling around Jupiter’s opposition, which in turn has given us two extraordinary events. Although Callisto and Europa have done their share earlier this year, Io and Ganymede wrapped up the year in two amazingly cultured shows, and the results were prolific. Jupiter and its moons are such treasures!

Results of the October 31, 2011 Jovian Dual Transit

An other amazing spectacle in solar-system astronomy! We must thank again the moons for such a wonderful show - as Io and Ganymede transited this last October 31, 2011. We here in America could not view this event as proficiently as we could have hoped to, but scattered simulations were found all over the web, reminding us of what did occur. Although I could find no pictures of this last transit, (it was very fortunate that I did the last!) here are some computer simulations from all over the web for us to see what did happen. 

"After having such a prolific season of simultaneous Jovian dual-transits last May-June, it will be hard to accept the fact that we have only two more this 2011 season: October 24, 2011 and October 31, 2011. Each transits are an exact week apart (although times differ) and both are dual-shadow transits. Io and Ganymede both partake in each event, as their orbits must be aligned perfectly just for this week." Read more at the link above. (Basic insight of what happened).

31 October 18.23 UT

Here's a simulation from WinJUPOS of what it will look like at 18:15


Below is a picture computed (simulated) by Celestia software. You can see Ganymede and Io as the light blobs, and their shadows cast on the planet. If you would to see the picture clearer, you may click on it for higher resolution. 


Although these are not the most high quality images available, they do beautifully illustrate the beauty of this transit. So, just to say - I will hopefully be receiving the 2012 Galilean moons calendar soon - so until next year....

Saturday, October 29, 2011

Jovian-Dual Shadow Transit for October 31, 2011

Remarkable was the dual-shadow transit on October 24. But, there is yet another and unfortunately the final dual-shadow transit of Jupiter in 2011. October 31 will bring us one more "astronomical morsel" and this one will be presumably about the same as the last: Io will transit just beneath the waistline of Jupiter, and Ganymede at the exact bottom of the king of the planets. Both of the shadows will be cast on the planet for only sixteen minutes, from 18:10 to 18:26 UT. This will be during the day for Washington DC, at approximately 1:10 to 1:26 EDT. Although this is rather sad, the eastern world will be able to witness the last Jovian dual-transit for the great year of 2011. A comprehensive photo shoot (courtesy of The Transits Page) is shown at the end of this article. Below is a picture of the Jovian moons at 00:00 UT on October 31, 2011, or at 8:00 October 30, for us here in EDT.

Image Credit: Transits Page; Text entered by AstronomicalEventsCalendar

Callisto beautifully rests on top of the planet, as it's orbit appears to be above the planet, we must remember that these orbits are three dimensional - and that since Jupiter is titled towards us, it looks like Callisto orbits above. Sense Perception! Concerning the transit, you can see Io and Ganymede - Ganymede will swoop down and catch up to Io (they are not actually that far apart in the two-dimension scale, becasue of their orbits, but they appear to be far apart). The dual-transit itself will start at 17:46 UT and end at 18:22 UT, lasting only 36 minutes. If you can remember, this is very shorter than the October 24 transit.The next picture below concerns itself right before the transit - at 16:00 UT. Ganymede and Io are now very noticeable together.

Image Credit: The Transits Page; Text entered by AstronomicalEventsCalendar

If you're wondering what a Jovian dual-sahdow transit is? Look no further - Here, we can clarify the terms of dual-shadow transit, and dual-transit, becasue both can happen at the same time - the October 24 and 31 transits are great examples of these (among others). A dual-shadow transit occurs when two shadows of moons travel across the surface of Jupiter together (and yes this can also happen on any other planet with two or more moons, etc.), and then, when the two moons travel together, it is called a dual-transit. (The difference is just either the shadow or moon), but both have to cross Jupiter (or any other planet, etc.) at the same time. You can read more about Jovian transits in our last transit: October 24.

-all pictures below are credit The Transit's Page, Galilean Moons Simulator; text entered by myself-



Another object to note is the conjunction of Io and Ganymede again, but the next day:
2011-Nov-01 05:19 Conjunction of Io and Ganymede [144.0" W; 21.7" S].


TOTAL EVENTS FOR OCTOBER 31, 2011
2011-Oct-31 15:12 Conjunction of Io and Ganymede [44.7" E; 13.1" S]

2011-Oct-31 16:13 Transit Ingress of Io (All satellites no more visible to the east of Jupiter)
2011-Oct-31 16:18 Shadow Transit Ingress of Io
2011-Oct-31 17:18 Inferior conjunction of Io
(2011-Oct-31 17:45 Conjunction of Callisto and Europa [204.4" E; 38.1" S])*
2011-Oct-31 17:46 Transit Ingress of Ganymede (Double Transit Begin)
2011-Oct-31 18:10 Shadow Transit Ingress of Ganymede (Double Shadow Transit Begin)
2011-Oct-31 18:22 Transit Egress of Io (Double Transit End)
2011-Oct-31 18:26 Shadow Transit Egress of Io (Double Shadow Transit End)
2011-Oct-31 18:30 Inferior conjunction of Ganymede
2011-Oct-31 19:09 Transit Egress of Ganymede
2011-Oct-31 19:24 Shadow Transit Egress of Ganymede

*Object of Note!
(with thanks to the Galilean Moons Simulator)

Thursday, October 27, 2011

Jupiter at Opposition October 29, 2011

This October 29, Jupiter will reach the closest to earth, making observation excellent on cloudless nights. It is the closest approach the planet will ever get to earth between the dates of 1963 and 2022, so now is the time to study the king of the planets. On this day, earth will pass directly in between the Sun and Jupiter, making Jupiter the brightest, becasue it's closest. Although on this date the planet will be the brightest, it will be more noticed in November due to its movement in the sky. Currently, this planet is about 35 degrees from the horizon in the east, and the Galilean moons are very easy to view - even with binoculars.

Jupiter, taken by the Cassini space probe

Shining at magnitude -2.9, Jupiter is in Pisces and is 49.7 arc-seconds across. At 18:44:21 UT, Jupiter is at greatest opposition, being 3.96976 AU (Astronomical Units, distance of earth to sun, or 93 million miles) from the planet. This is 369,012,245.45797 miles away, respectively. What times can I see Jupiter? This is an excellent question - Jupiter is at opposition, therefore meaning that Jupiter will be visible all night. (Even when the moon is full, Jupiter is still bright and beaming!).


Jupiter, as seen by the Cassini space probe (the back spot on the planet is Europa's (moon) shadow)
Where Jupiter is in relation to the constellations

Viewing the Galilean Satellites

As some readers might note, Jupiter's moons are a big point of interest here at Astronomical Events Calendar. (We have even a blog dedicated to them). With just simple binoculars, you can make out all for of the Galilean moons: Io, Europa, Ganymede, and Callisto. The past few nights, I have seen the moons fairly easily and you can too. But how do I know which moon is which? As a general rule of thumb, the innermost moon is Io, the second Europa, then Ganymede, and Callisto's orbit is the farthest; all these moons, though, are at different positions and therefore hard to discern without a very strong telescope lens (you can tell by color, then) or a map of where the moons will be.

Sky&Telescope provides a "wobble*" map, showing where these moons will be in relation to Jupiter. Below are some pictures of where these moons will be positioned on certain dates.


Jupiter will be visible in the sky through the rest of 2011, but note that it will be getting dimmer. Note that Jupiter will be the closest to earth only this year until 2022 again, and keep an eye on the glorious moons of our favorite planet: Jupiter!

*for November

Credit: NASA