Diberdayakan oleh Blogger.

Seguidores

Followers

RSS
Tampilkan postingan dengan label CCD Observing. Tampilkan semua postingan
Tampilkan postingan dengan label CCD Observing. Tampilkan semua postingan

Feast or Famine

I've complained enough about the worst winter ever for observing here at the C. E. Scovil Observatory, so I won't add to the litany of complaints.

But there is plenty of good news to report as winter seems to be loosening its grip on Michigan.
1- The weather has been good lately. It's still cold, but at least the clouds have found someone in Nebraska or Minnesota to bother. They've thinned out here.
2- I finished insulating and paneling the roll-off shed control room. It's actually almost too warm in there at night. I was in shirt sleeves tonight, and sweating a bit around the neck. Outside temperature, -2.3C.
3- Because of the crappy weather I had a lot more time to devote to fantasy football this season, resulting in my winning the championship in two out of three leagues I played in.

Not only did I get the satisfaction of finally beating my son in the playoffs (he has owned me for five years!), I won enough money to by a new CCD autoguider and 80mm guidescope to improve my photometry results. I also bought a new awesome treadmill for the living room. Irene and I can share the miles and smiles while watching all our favorites on DVR.
4- Even though my 12" GPS still can't point worth a damn, its now taking great data once I get it parked on a variable star.
5- The new photometry software, also compliments of fantasy football, is worth every nickel and making life much more enjoyable for me.
6- Not only is my own observatory ramping up the amount of data collected each week, but my request for remote observations from the Sonoita Research Observatory was granted, and now I am getting data 3-4 times a week on my target stars from Arizona.

So we have gone from no observations for November- January to working every free minute to keep up with the glut of data coming in and reporting activity and outbursts of CVs in my program in a timely manner to CVnet and AAVSO.

Like many things in life, sometimes it's feast or famine. This month it's feast.

  • Digg
  • Del.icio.us
  • StumbleUpon
  • Reddit
  • RSS

Interesting Outburst Update

The weather cooperated nicely Friday into Saturday morning and I was able to collect data on two eclipses of IY UMa. This light curve looks a lot better than the last one. The errors are small and this covers two cycles and two eclipses in pretty good detail.

Click to enlarge

Pretty schweet, huh?

  • Digg
  • Del.icio.us
  • StumbleUpon
  • Reddit
  • RSS

Interesting Outburst

A couple nights ago IY Ursa Majoris (IY UMa) went into outburst. This is one of those rare eclipsing CVs that astronomers really like to get data on, because with an eclipse you can tell the period of the system as the components orbit around each other.

In a CV binary, one star is a white dwarf: a collapsed star of approximately one solar mass in the volume of the Earth. The other star is a red dwarf rather like our Sun, but redder and less massive.


The red dwarf and the white dwarf orbit each other once every few hours: they are so close together that the average CV system would fit comfortably into our Sun. The red star in a CV is so close to the white dwarf that it becomes tidally distorted --- gas is stripped off the red star and falls towards the white dwarf. The infalling gas forms a disc -- an accretion disc -- with the white dwarf at its center. The gas in the disc spirals down towards the white dwarf, radiating its gravitational potential energy away as it goes. The accretion disc usually outshines both the red star and the white dwarf in visible light.

When these systems go into outburst it is the material in the accretion disk falling onto the white dwarf and burning off in a giant explosion that we see as a brightening of the system. In some cases, the white dwarf and the red dwarf line up more or less to our line of sight, and as one passes in front of the other we see it dim as it is eclipsed. The disk can be eclipsed, the hot spot can be eclipsed, the white dwarf may be eclipsed, and from all these clues we can figure out a lot about these CVs.

In order to get a firm handle on the period, it is best to observe and record at least two eclipses, if not more. Most CVs I monitor have orbital periods of anywhere from 90 mimutes to 3 hours. That means you need somewhere between 3 hours and 7 hours of clear weather to have a good run.

The weather forecast was promising for Monday, so I got out and tried to grab an eclipse observation with the 12" LX200 and CCD camera. Below are my results. You can click on the image to see it up close.

As you can see, I only got one eclipse, but it is pretty easy to see in this light curve. You can also see the affects of incoming clouds on the quality of my observations as the data gets noisier and noisier as the system was coming out of eclipse. When the error bars grew to 0.2 magnitudes I was shooting through thin clouds.

With a little luck, I'll get two eclipses tonight.

  • Digg
  • Del.icio.us
  • StumbleUpon
  • Reddit
  • RSS