Monday, July 8, 2019

#192 - Sunday, June 30, 2019 - Southern Skies from Mamalluca Observatory

After a fun day driving to the small town of Elqui Pisco to enjoy some delicious pisco drinks at the Mistral pisco distillery, we drove to the Mamalluca Observatory near the village of Vicuña.  It's an observatory created for the public to enjoy in the dark skies of the Andes.  We weren't able to squeeze in on a tour that night, although the gentleman manning the gate was very helpful and asked the director if we could observe on the grounds.  We ultimately weren't able to, but there was a large parking lot just down the hill from the observatory, and we got to enjoy the dark skies from there.

There were a lot of headlights coming up the road for the activities that night -- they told us 700 people were coming that night!  But the Milky Way was up high overhead and was mind-blowingly incredible.  I set up my Vixen Polarie and my Nikon D5300 with my 35mm f/1.8 lens (50mm effectively on my cropped sensor) and did some long-exposure imaging of the Milky Way.

Southern Milky Way, Nikon D5300, 35mm, ISO-800, f/2, 120s

I brought my Meade 10x42 binoculars with me and we did some observing through those as well.  We saw a number of objects -- Southern Cross, bright star Canopus, Jupiter, Mars, constellation Lupus, the Large Magellanic Cloud, the Eta Carinae nebula, the Coal Sack dark nebula, the Jewel Box cluster, and much more.  It was fun just to rove around with the binoculars and see globular clusters and open clusters and dark nebula just everywhere.  The sky was incredible!

I also put my Nikon D3100 on my mini-tripod and took some non-tracked images of the Milky Way, and some with people.


Overlooking the town of Vicuña.  Cerro Telolo Observatory is in the background on the mountains.

Despite the headlights, it was a fun night of imaging and observing!  I took some mosaics and multiple images of the same part of the Milky Way that I will process when I get home.  So excited for more dark skies in San Pedro de Atacama in our second week!

[ Update August 29, 2019 ] 

Now that I've moved into my new place in Berkeley, CA, and I've gotten myself mostly unpacked, I finally got the Milky Way stack processed!

Date: 30 June 2019
Location: Mamalluca Observatory, Chile
Object: Eta Carinae & Coal Sack Nebulae
Attempt: 1
Camera: Nikon D5300
Telescope: Nikon 35mm f/1.8G lens at f/2
Accessories: N/A
Mount: Sky-Watcher Star Adventurer
Guide scope: N/A
Guide camera: N/A
Subframes: 19x60s (19m total)
Gain/ISO: ISO-800
Acquisition program: Intervalometer
Stacking program: PixInsight 1.8.6
Post-Processing program: PixInsight 1.8.6
Darks: 0
Biases: 0
Flats: 0
Temperature: 45-47F

I should have been studying for prelim exams, but Facebook reminded me that I haven't made a post in a while...

The DynamicBackgroundExtraction process helps a lot with light pollution.  Here's a comparison of the auto-stretched versions of the same image -- one where I used the DBE process, and one without (no other processing after that).

Without DynamicBackgroundExtraction

With DynamicBackgroundExtraction

You see why it's basically my favorite process in PixInsight!

Here are all the PixInsight steps:
- No darks or biases for this set because ISO-800, so started with SubframeSelector:
- Scale: 23.07 arcsec/px
- Gain: 0.115 (just used the value for ISO-1600 because I forgot I did this at 800, and I don't have calibration frames at ISO-800)
- Highest-scoring frame: DSC_0163 (88.081)
- Debayered
- Registered with StarAlignment
- Stacked with ImageIntegration
- Combination: Average
- Normalization: Additive
- Pixel rejection: Winsorized sigma clipping
- Cropped with DynamicCrop
- Denoised with MultiscaleLinearTransform, with luminance mask
- Applied DynamicBackgroundExtraction
- Corrected color with PhotometricColorCalibration
- Stretched with MaskedStretch
- Tweaked colors and saturation with CurvesTransformation
- Created a star mask with StarMask, grew the stars with MorphologicalTransform, and then
used HueSaturation to reduce the magenta tinge in the stars from the lens
- Tweaked some more with CurvesTransformation
- DarkStructureEnhance

Just a few more datasets to go!





Wednesday, July 3, 2019

#191 - Sunday, June 29, 2019 - First Peak at the Southern Sky!

I have arrived in Chile!  I will be here for two weeks for the July 2 solar eclipse, as well as some dark desert southern sky astronomy!

On our second night at the hotel, the sky had cleared out, so we went to the parking lot (moving slowly so as not to trigger the motion-detector floodlights) with my binoculars, and got ourselves oriented with the southern sky.  Earlier that day, we watched the sun cross over the north instead of the south -- super weird!

We spotted a lot of stuff, even from fairly-light-polluted La Serena.  We first noticed the Southern Cross and the bright Centaurus constellation stars of Rigil Kentaurus and Hadar, and then we saw some fuzzy splotches that we investigated with the binoculars.  We saw the Jewel Box Cluster, the Eta Carinae nebula, and the Southern Pleiades cluster, as well as the southerly constellations Lupus, Pavo, and Volans.  Eta Carinae was easily discernible in binoculars, even with the light pollution, which was really cool.  The two clusters were really pretty -- can't wait to see them with a big juicy Dob out in the desert!  Then we looked more northward to find our familiar constellations and stars.  Scorpius was on its side, and it took us a few minutes to spot the sideways Teapot asterism of Sagittarius!  Jupiter was up much higher as well.  Arcturus was in the north, with Spica sitting well above instead of below it.  It was so weird, and so cool!

 
The Southern Cross, Centaurus, and Lupus behind a palm tree at the hotel

Jupiter, Scorpius, Sagittarius, and the Milky Way

#190 - Tuesday, June 25, 2019 - Star Tours

My boss asked me about a year ago if I would be willing to do some astronomy with his two high-school-aged daughters.  I wanted to bring them out to the observatory and show them the night sky sights, but a good night never surfaced - it was either a clear moonless weekend night where I was planning on imaging, or it was cloudy, or a week night when they had school the next morning, or one of us was busy, or any number of things. 

Finally, the forecast called for clear skies, his daughters were out of school for the summer, and I wasn't planning on imaging that night because I wasn't going to be able to get enough done before having to get to bed for leaving for Chile the next day!  And they were available that night.  So I packed my 8-inch Celestron NexStar SE rig into my car, since I didn't want to risk the club's similar version being checked out or something, as well as a jacket and some bug spray!  I also unpacked my ZWO ASI1600MM Pro, my electronic filter wheel, and my tablet from the suitcase I had prepped for my upcoming trip to Chile so that I could do some planetary imaging of Jupiter, which is shining brightly post-opposition in the southeastern sky in the evening. 

I got out there about 8:30, unlocked the observatory, and gave them a tour of the building.  We went up into the dome with the old, very long reflector in it, which I've never seen through since the dome doesn't rotate properly at the moment.  We're in the process of replacing the scope and mount and getting the dome fixed.  After the quick tour, we hung out outside as the sky slowly darkened (very slowly!).  I got my telescope set up, and Jupiter was visible in not too much time, so we looked at that for a while.  My telescope was hot from sitting in the car, so there was a lot of heat current disturbing the view for a while.  The scope cooled eventually, and the air finally settled down.  After aligning on a couple stars once they popped out (and identifying them for my guests), we looked at a couple of other objects as it got darker. 

Some patchy cloud banks rolled through, but by about 10:15, they had cleared out pretty well, and the sky was gorgeous.  We saw numerous satellites and rocket bodies up overhead, even from our fairly light-polluted location.

First, we looked at Mizar and Alcor, and we could easily see Mizar's twin.  We saw a hint of Alcor's second star.  Then we went over to double-star Albireo, which was pretty and up high.  As the sky darkened, we could move on to dimmer targets, like M57, the Ring Nebula, since Vega was an obvious star for them to find.  It was readily apparent with averted vision due to its compact size.  That got them used to using averted vision, and then I went over to M51 Whirlpool Galaxy.  I showed them pictures I had taken of the Ring Nebula and the Whirlpool Galaxy after they looked in the scope so that they'd have a better idea of what exactly it was they were looking at.  M51 showed two obvious cores and some hints of spiralness despite the still-bright sky.  They were awe-struck to imagine the vast distances involved between galaxies!

My boss and his two daughters left around 11 PM, and I stuck around to capture some images of Jupiter.  I got my ZWO and filter wheels attached and started grabbing a couple of data sets.  The day before, I finally received the 2-inch to 1.25-inch filter converter I ordered from High Point Scientific, which let me fill up the empty slot in my filter wheel with the Johnson-Cousins IR photometric filter I have from one of my fellow club members.  I've used it previously for imaging planets, and since light is less perturbed by the atmosphere at that wavelength, it makes for a great luminance channel.  The seeing looked pretty decent, so I was optimistic about the data.  I took a few sets, and then packed up and left around midnight.  A fun evening!  I'll have to wait to process them until I get back from Chile though!

Friday, June 14, 2019

#189 - Tuesday, June 11, 2019 - Jupiter Double-Shadow Transit

I read in Sky & Telescope a couple months back that June 11th was going to host a special astronomical event: a double-shadow transit on Jupiter!  This happens when Jupiter's moons pass in front of it when Jupiter, Earth, and the sun are position together in such a way that we can see the shadows over the cloudtops.

Borrowed from Sky & Telescope

These occur as often as once or twice a month, but this was my first time catching one!  

Now, unfortunately, Jupiter's prime time at opposition (when the sun, Earth, and Jupiter line up, so Jupiter as at about its closest point to us) this year also comes when the plane of the ecliptic (the plane on which the solar system planets reside) sits quite low in the sky.  Jupiter only gets as high as about 26 degrees from middle latitudes, which means we have to try and view it through the denser, mushier part of the atmosphere.

The sky was relatively clear that night, with some well-formed but thin clouds drifting through, so I got set up in my front yard at around 10:15 PM.  This included my Celestron 8-inch Schmidt-Cassegrain on my Celestron NexStar SE mount, as well as my ZWO ASI1600MM Pro camera, and my Microsoft Surface 3 tablet to run the show.  I was ready to roll at 10:30.  Jupiter was still behind a tree, so I started with the moon for a few minutes.  Then I went ahead and slewed over to Jupiter to get set up, get the parameters figured out that I wanted, and practice a couple times doing the filter change, target name change, exposure time change, and capture data rotating sequence I would need to do quickly in order to get through all four LRGB filters before Jupiter rotated too much.  I cropped the frame down to 640x480 so that I could get as much speed as possible, which also allowed me to capture more frames in the moments of clear seeing.  I averaged about 20-60 fps depending on which filter (and thus, which exposure time) I was using, thanks to the USB 3.0 on my ZWO.  

Now, of course, all of those clouds I mentioned were in the south, where I needed to see!  Fortunately, they drifted north, and I finally got a clearer view of Jupiter.  I took LRGB datasets about every 5-10 minutes for an hour and a half.  I couldn't see Io's shadow in the camera image, but I could see Ganymede's!  

All told, I collected 14 datasets.  At the end, I took the camera off and put an eyepiece on, since I hadn't actually seen a shadow transit at all before.  Io was just off the edge of the disk, having completed its transit, and I could clearly see Ganymede's shadow.  It was really neat.  I frst looked through a 25mm eyepiece, then 13mm, and then 13mm with a Barlow.  The seeing was pretty bad, but sometimes I could see  more detail.  It was a fun event!  And I was quite tired at work the next day!  The temperature was quite pleasant though - 63 degrees, and no wind at all.

I'm still plowing through all of those datasets, hoping to find one that had enough clear moments to make a nicer image, but I got some not-too-terrible ones!

Frames: L: 475/2013
    R: 371/1006
G: 398/1002
B: 470/1005
Exposure: L: 12 ms
  R: 30 ms
  G: 30 ms
  B: 40 ms
ISO/Gain: 139
Stacking program: RegiStax 6
Processing program: PixInsight 1.8.6

You can see Ganymede's shadow up near the top, and I think I see Io and its shadow in the upper dark red band, closer to the right.

So the way that I processed this is:
- Stacked and did wavelet deconvolution on each LRGB channel in RegiStax
- Imported those TIFFs into PixInsight and aligned them using the script FFTRegistration that I found while I was poking around for any scripts or processes that could align on objects instead of stars.  This script can align objects as opposed to stars using a fast Fourier transform algorithm that looks at where the spatial frequencies are.  I actually did this in Matlab for a homework assignment for one of my classes once, and it was really neat how it worked!
- Applied the LinearFit process to each channel with one channel as the reference to make them all the same brightness
- The images come out of RegiStax as RGB, even though they appear grayscale, so I had to use the ConverToGrayscale process to convert them to be actually grayscale (single-channel) before I could combine them
- Combined them with LRGBCombination, but then decided to leave off the L channel, since it made it fuzzier
- Sharpened the image with MultiscaleLinearTransform
- Denoised with MultiscaleLinearTransform
- Denoised with ACDNR
- Adjusted curves and saturation with CurvesTransformation
- Calibrated the color with ColorCalibration, using the whole image as reference, and a patch of black background as the background.  This actually did a nice job, even though I think it's normally meant for stars and galaxies.

And voila!  Pretty neat.  This was my first time post-processing planetary images in PixInsight, and I liked it.  Far easier than trying to align each channel myself in Photoshop!

I'm also planning on putting all of the images together into a video to show the transit and Jupiter's rotation.  It might be a while before I can get to that, so keep your eyes out!

[ Update June 20, 2019 ] 

Finished generating the rest of the images!  Here's one of my faves.

In this one, you can easily see both Ganymede and its shadow near the top, and Io has just cleared Jupiter's limb on the right side.  

I also created a video!


So cool!!!
I made the video in PixInsight using the Blink tool.  It lets you use ffmpeg to generate video from the individual frames, and you can set the frame rate.  It does a variety of formats, so I made an AVI and a GIF.  The GIF makes it a bit noisier, but it's easier to share.

I tried to align the rotation (it appears to rotate as it moves across the sky because I used an alt-az mount), but turning on the rotation alignment in FFTRegistration didn't seem to do anything  I could rotate by hand, but that does not sound fun.  I'll find another program out there.  Or, I do have some Matlab code from a class I took where we used the Fourier transform in log-polar coordinates to calculate the rotation...

Hopefully the next one I can catch will have better atmosphere!





#188 - Monday, June 10, 2019 - Finally, Some Outreach!

It's been a long, cloudy month since the end of the Texas Star Party.  I almost went out to the observatory one night -- had the car loaded up and everything for zipping out there after the astronomy club's board meeting -- but alas, the forecasts were mixed, and the sky was pretty hazy.  But we finally got a clear night, and I happened to have signed up to do an outreach event that night!  It's my first outreach event of the year, since I've been pretty busy lately and couldn't make some of the others.

This particular event was held in a paved lot behind a school, and we had quite a few kids and their parents come through.  We also grabbed some random passers-by who were curious about what we were looking at.  Because of the light pollution, the only things we really tried to look at were the waxing moon and Jupiter as it peaked above the building.  The seeing was decent before darkness fully settled in, but it got worse as it got darker.

There were seven of us there from the club with five telescopes set up.  I brought my 8-inch Celestron Schmidt-Cassegrain on its Celestron NexStar SE mount, my go-to outreach setup for how easy it is to put together and how nice of views it gives, especially of the planets and the moon.



Kids and parents alike were amazed at how awesome the moon looked under some magnification.  Even though we see the moon all the time, it's a whole different experience when you apply some magnification!

Later on, I swapped out the eyepiece for my ZWO ASI1600MM Pro camera to do some imaging on the moon, but I ended up getting pretty sidetracked talking to people, and before I knew it, we had to pack up and go so they could close up the lot.  One of the people I was talking to was a boy about 11 years old or so who was asking a lot of fun questions about black holes.  I love answering science questions :D

I did snap a few shots with my cell phone though!

Through my 32mm eyepiece with my Samsung Galaxy S9 camera.

I almost set up my gear in my front yard as soon as I got home, but I was tired, it was kind of chilly, and I could see a bit of a haze in the air.  Plus, the seeing was pretty degraded earlier.  So I went to bed.  It was a fun evening!



Friday, May 24, 2019

Texas Star Party 2019 Summary

Left to right: dad (Erik), Uncle Chris, me, mom (Jill), and Aunt Jo, with my telescopes

My third Texas Star Party is on the books.  I had a good time!  Despite the equipment failures, the generosity of my friends, family, and star-neighbors more than made up for it.  It was so much fun to have my parents Jill and Erik, and my Aunt Jo and Uncle Chris there!  It made me really happy how my parents and aunt all participated in the astronomy with Uncle Chris and I, especially when my parents took over my visual scope and worked through a whole observing list!  I don't expect they'll become astronomy converts, but I hope they have a better idea of what Uncle Chris and I do now.  There are (many) moments of shouting at equipment, cursing the astronomy gods, and smacking your head on the table, but there are also many moments of joy when everything is connected and your stars are round and the subframe that just came in is so beautiful and perfect.  Add visual observing on top of that -- having the photons that were emitted by some star or supernova or galaxy, after traveled hundreds or millions of lightyears, be absorbed into your retina -- and everything is like magic.  How blessed are we to see such wonders!

My 11-inch Schmidt-Cassegrain on its Celestron CGE Pro mount did not see starlight this year.  In the weeks leading up to TSP, I chased down the issue with a multi-meter and a set of hex wrenches, and came to the conclusion that it's something inside the declination axis motor that is causing the motor to pulse, dependent on slew speed.  It performs gotos just fine, but guiding well is impossible with it in this state.  A new motor, from what few Celestron still has left of it (they are no longer sold by Pittman), is north of $500.  And after everything I've been through with this mount and the CGE before it, I'm not sure I want to spend another dime on it.  I'm still trying to figure out what to do next.

Instead of the CGE Pro, I borrowed two Celestron AVXs: one from fellow club member Derek for a few nights, and one from TSP volunteer Jeff for a few nights.  Both Derek and Jeff were very generous to let me borrow their mounts, which allowed me to still run two rigs and take advantage of the dark, clear skies!  I attached my Borg 76mm apochromatic refractor to it, eventually got my other Orion 50mm guidescope on top, and ran my ZWO ASI1600MM Pro camera on it, with my Starlight Xpress 2-inch, 5-position filter wheel and my Astronomik LRGB filters.  And a problematic Hotech field flattener.


On that rig, I imaged:
- Centarus A galaxy
- M8 Lagoon Nebula
- M63 Sunflower Galaxy
- M106 galaxy
- Western Veil nebula
- M27 Dumbbell Nebula

On my own Celestron AVX, I put my Uncle Chris' Takahashi FSQ-106N, my other Orion 50mm guidescope, and my uncle's SBIG STF-8300M with its integrated filter wheel consisting of 36mm Baader filters of LRGB and Ha (hydrogen alpha), OIII (oxygen-III), and SII (sulfur-II) narrowband filters.  Later in the week, I bought the Tak from my uncle for the family discount 😁😁😁😁😁😁😁😁😁 So excited to own one!


On that rig, I imaged:
- M16 Eagle Nebula
- Elephant Trunk Nebula
- M81 & M82 galaxies
- M101 galaxy

In addition to my two main imaging rigs, I brought both my DSLRs, my Nikon D3100 and Nikon D5300, as well as my new Sky-Watcher Star Adventurer and my Vixen Polarie.  I mostly used the D3100 for timelapses, and I did some widefield stuff with the Star Adventurer.  I meant to get a picture of that rig at TSP, but kept setting it up and tearing it down at night.
With the Star Adventurer and D5300, I imaged:
- Milky Way & Rho Ophiuchi widefield
- Veil Nebula widefield
- Cygnus region widefield

There was some generosity involved with making my DSLR photos awesome too -- fellow club member Paul let me borrow three of his fast Nikon lenses!  A 35mm f/1.8, a 50mm f/1.4, and an 85mm f/1.8.  It was really fun to use those!  I also got to try them out in the daytime, which made for some really awesome photos of some flowers and my cats with the tight focusing range.  The 50mm lens had too much chromatic aberration for me to want to deal with on the stars, but the 35mm lens on my APS-C DSLR chip made the FOV look like a 50mm lens, so that worked out just fine.  I did an image set with the 85mm lens as well on the Veil Nebula, although I haven't finished processing that one yet at the time of writing.

All told, I imaged 13 targets, totaling more than 1,000 subframes and 41.5 hours!  Talk about a productive week!  That comes to 30 GB of images, before processing.  And now I am busy busy busy processing all the data.  And that's just the astro data -- I took some 36,000 timelapse photos, collapsed into a 10-minute movie (many were cut).

  

It was also fun seeing people I had met in previous years -- everywhere I went, someone else was saying hi!  Unfortunately my memory for people is pretty terrible (all of my brain's memory space is filled up with science, mostly), but I've gotten good at faking that I remember people :P So sorry if I should have recognized you and didn't!

On Saturday night, I was planning on getting started packing up my gear after the Great Texas Giveaway and the speaker, and I was going to set up my Star Adventurer and DSLR to run all night while I slept since it's easy to pack up in the morning and goes on top, but I was tired, it got dark very shortly after the giveaway, and I just really didn't want to!  So I went to bed and left the packing till the morning.  It was cloudy anyway I think, and I would have had to stay up till after the Milky Way rose to cue up a Milky Way widefield target for the DSLR.  

It was cool in the morning, although dew had formed overnight for the first time that whole week.  That meant I had to put away quite a few things wet, like my canopy tent.  My dad had taken off Saturday at noon to fly back home to Washington state, so it was just my mom and I packing.  She was great help though, and with her epic-level packing skills, we got everything back into the car, including her luggage.  I did send one of my bins and the CGE tripod home with fellow club member Derek though in addition to my visual scope that he brought down for me, and I'm glad I did because we barely got everything to fit!  After all, I had to squeeze my new Takahashi and the borrowed SBIG camera in there, plus the swag I bought at the McDonald Observatory, the books my mom won, some stuff my family brought down but didn't want to take back (like the coffee maker), and her stuff.  But we did it!


The drive home was uneventful, although I did have my mom drive for a while because I was out of energy.  I didn't sleep though; instead, I started processing photos!  I have an AC port in the car I can plug my laptop into, which is very handy.


As of Memorial Day weekend when I'm writing this, I'm still working on processing all the data I took.  I'll update the posts for the nights I took the data as I get through them.  At some point soon, I'll also write an "Image Processing 3.0" post with the workflow I've settled into in PixInsight.  I've even saved a bunch of processes with all my settings to a workspace!


It was a great week of relaxation, hanging out with my family, and lots of astrophotography.  We had a lot of clear nights, and I didn't get a whole lot of sleep!  It was so awesome having my family there.  I brought my youngest sister Melody to TSP 2017, so now I just need to bring my other sister Mary!

I'm starting my PhD this fall, and I have a bunch of classes to take.  They announced next year's TSP dates on the last night -- May 17-24, which is perfect because exams end May 15th!  So there's a decent chance I'll still be able to go next year after all.  Woo hoo!






Monday, May 20, 2019

#187 - Friday, May 3, 2019 - Baggin' Targets: Texas Star Party Night #6

Thursday night was cloudy, so I'll talk about Thursday in Friday's entry.

I slept in till 12:15 PM on Thursday, and was glad that the forecast for Thursday night called for clouds.  I needed a break!  Luckily, Friday's forecast was strong.  I slept so hard that I didn't wake up at all for all the sound of my aunt and uncle packing up and leaving.  I missed lunch and just had some oatmeal instead (I brought an electric kettle down with me), and then I set up some timelapses around the ranch during the day so I could build another Texas Star Party timelapse video.

A curious onlooker.

I used my Vixen Polarie laid on its side to do some panning.  I got a lot of questions about it as I roved around the ranch moving from spot to spot!

That afternoon, we took a trip to Alpine to see what was there.  We found a bookshop and wandered around for a while, and it was attached to a coffee shop, where I got myself a much-needed chai latte.  


My parents perusing the books

They had some beautiful sketchbooks, and I was trying to think of someone to buy one for.  One of my friends, Stephanie, was getting married soon, so I thought it would make a great gift!  One of the employees even wrapped it for me and tied a big beautiful bow.

After stopping at another coffee shop because my dad decided later that he wanted coffee, we drove back to the ranch in time for dinner.  After dinner Thursday night was a talk by Amanda Bayless of the Southwest Research Institute called "Black Holes Don't Suck" about the recent image of the black hole in M87 and gravitation waves.  It was a great talk, and well-attended, with a great number of questions.  Amateur astronomers fall into the category of having just enough science knowledge to be dangerous at a scientific Q&A, haha.  After dinner, we sat outside under the clouds for a while enjoying the ambiance, and there were quite a few holes in the clouds, which were not very thick.  We checked off the last item on my family's "Rising Star" observing pin list, which was Mars.  It was on its way to the horizon, and we first found it naked eye, and then I pointed my 8-inch SCT that direction.  We're quite far from it ortbitally-speaking at the moment, so it was very small in the eyepiece.

On Friday, we stopped by the pin-giver of the Texas Star Party, John Waggoner, to receive our observing pins.  I got my Smoke & Mirrors pin, and my parents got their Rising Star pins, their first!

That night after dinner, we attended the talk by Babak Tafreshi, "The World at Night."  He does nightscape photography all over the world, and he made me want to buy a fast lens and try and get better at it!  His images were breahtaking.  Following his talk was the Great Texas Giveaway #1, but my name was not pulled.  My mom's was though, and she won the first two volumes of "The Night Sky Observer's Guide" by George Kepple and Glenn Sanner, an exhaustive work covering the northern sky year-round and all sorts of deep sky objects, where to find them, what they are, and how to observe them in different-sized telescopes.  My mom handed them off to me, and I'm planning on going through them to find not-oft-imaged targets!

Later in the evening, I received a very nice note from a follower of my Facebook page:

"Hi, my six year-old daugher, Mackenna, and I love looking at your pictures.  She thinks it's neat that you're a girl and you get to do pretty awesome things (this is how we justified letting a six year-old watch the PG-13 rated Captain Marvel!).  As a father, thank you for being an example to my young daughters that math and science are cool."

I had a big ol' cheesy grin on my face as I read it!  I try to get out in the community as often as I can to be an example of a female scientist for everybody out there.  There's a phrase, "You cannot be what you cannot see," and it's so true -- it's hard to imagine ourselves doing something if we haven't seen someone else "like us" do it before.  The idea that you can do something can be planted in your head by seeing someone who is "like you" doing it, especially at a young age, but even when we're older.  Both for the boys and the girls -- young girls can see that they could be a scientist too, and boys can see that it's not weird.  So hello Mackenna in McKinney, TX!  Science is exciting and awesome, and there are so many different ways to get involved in it, like astrophotography!  For me, I do science both professionally as a physicist, and for fun as an astrophotographer.

With another clear night ahead, I dashed down to the observing field after the talk and drawing and after changing into some warm clothes quickly in the bunkhouse.  Within 15 minutes of arrival on the lower field, the Takahashi FSQ-106N with my uncle's SBIG STF-8300M on my Celestron AVX was up and running, and I was imaging by 10 PM.  I slewed to and centered on M81 and M82 using Sequence Generator Pro.  The first hydrogen alpha image I took looked out-of-focus though, so I slewed to Capella to re-focus, only it wasn't in the field of view!  So I slewed home, and the index markings on the mount weren't quite lined up.  So I shut down the mount and re-aligned.  It worked just fine after that.  I focused the H-alpha filter, and then slewed to a southish star to re-calibrate PHD2's autoguiding (calibration works better far from the pole).  However, on its way around, the power cable for the SBIG camera got caught and pulled.  The cable I had in that bundle was the one for fellow astronomy club member Phil's SBIG camera that I was originally going to use, so I grabbed the power cable for my Uncle Chris' SBIG that I was actually using and plugged that one in.  It wasn't part of my bundle, so I had to take care with it as I slewed around.  It worked, but I had to re-align again because of the pulling on the mount.  Finally, I started imaging on M81 and M82, but it was already 11:30 PM somehow!!  

I set up the sequence to take L and H-alpha frames, with the H-alpha ones first.  I checked the subframes, but didn't see any of the red jets.


Since my uncle wasn't sure what order the narrowband filters were in inside the SBIG camera's integrated filter wheel, and since the OIII filter on the M16 data from Wednesday night was so bright, I tried the OIII filter, but didn't see much more -- at least, not in AvisFV, the simple FITS viewer I use.  Looking at it later though, I did indeed see the jets a little bit in PixInsight...


Well crap!  I took a bunch of what I thought were H-alpha frames, but they were either actually OIII or SII.  Later on, I actually looked at the filters, and figured out that the order they're in is OIII, Ha, and SII in the filter wheel, as opposed to Ha, OIII, SII like I thought.

Over on the Borg, I tried swapping out the short 2-inch connector with a longer one I have hoping to get a better connection with the Hotech field flattener so that it would stay flat with the focal plane, but unfortunately, it's too long and I couldn't reach focus.  So I put the shorter one back on.  It was cold enough that I didn't have too much trouble removing the nosepiece of the field flattener from the connectors.  My dad came over to help, and we rigged up a way to hold it up.


I took the picture the next day, but basically we took one of my short bungee cables and looped it behind my filter wheel (it's held down by two thumbscrews on the back) and then connected the hooks to the bolt on the top clamp.  It did a good job of holding it up, although it turned out to still not quite be flat, I don't think.  My stars at least didn't have little seagulls, but they were definitely more skewed on one side of the image than the other.

Since it was after midnight, I decided to go ahead and grab some images on Centaurus A, which I didn't get to image last year.  It's an irregular galaxy far enough south that I can't see it from my home location.  It comes up just 15 degrees or so in that part of Texas, so the guiding was all over the place due to thick atmosphere.  But there it was in my 3-minute subframes!

Centaurus A, ZWO ASI1600MM Pro, Borg 76ED, Luminance channel, 180s, gain 139

Once these were all rolling, I decided to take some long-exposure selfies with the fast lens, as well as pictures of my parents.  My dad, with his new knowledge of how to use my 8-inch SCT on its Celestron NexStar SE mount, was off to the races on completing the "Smoke and Mirrors" Texas Star Party 2019 observing list.  He would find the object (I need to make some adjustments to the mount since the backlash has gotten really bad; he did have to hunt around a bit), and then my mom and aunt would come check, and they would check it off.  They finished the required 26 objects of 45 that very night!  It took me a bit to find focus in the fast 35mm lens I was using, but I eventually did and got some cool shots.

My parents doing some visual observing.

Me with the Takahashi on my Celestron AVX mount, and Jupiter and the Milky Way behind

My minion Miqaela with her Celestron AVX and a borrowed Stellarvue

Me and my two TSP imaging rigs.  The fuzzy orangish blob up and to the right of me is indeed the massive globular cluster Omega Centauri.

Once Centaurus A got too low, I switched the Borg over to M8, the Lagoon Nebula, but the guiding looked terrible and the stars weren't quite round.

Single 3-minute subframe of M8; Borg 76ED apo refractor with ZWO ASI1600MM Pro and Hotech field flattener

Zoomed in

I couldn't think of much else to do for it, so I just let it run.  If you zoom out, it's not so bad...

Over on the Takahashi, I moved it to the Elephant Trunk Nebula to give that another try, but the guiding was going crazy, making huge swoops up and down.  


So I stopped everything and decided to check the balance on the mount.  It was a little off in declination, but I need a longer dovetail bar.  I hung a dec balance weight in the front, but it wasn't quite enough -- I moved it forward a bit and moved the counterweight down on it (at least as far as it wouldn't hit the mount), and got close at least.  Then I re-aligned, polar aligned with Celestron's All-Star Polar Alignment (super easy with a red dot finder), re-aligned, focused, and calibrated guiding.  Plate solving didn't seem to want to work in Sequence Generator Pro this time around though, so I just compared the brighter stars in the image to the map on SkySafari and hopefully got it lined up by hand.  The guiding looked much better now, only 1.5 arcsecs RMS of error.  It was pretty noisy though.


I took a test frame with the OIII filter (which I thought was Ha at the time), and I couldn't quite see it in AvisFV, but the stars looked right, so I uploaded it to Astrometry.net to plate solve.  It had a nicer-looking stretch than AvisFV's, and sure enough, I could just see it!  

By the power of stacking, it will be revealed!  Hopefully.

It's a lot easier to see in the actual Ha channel.

Oooooooh, aaaaaahhhhh

Since I only had a few hours left in the night and this would be the last night I could image on it, I decided to rotate through each filter instead of taking all of the shots for one, then rotating to the next.  Easy with an electronic filter wheel and SGP!  Then I could have at least some of each of the three narrowband filters, whatever I could get out of the rest of the night.  I wound up with 6 OIII's, 5 Ha's, and 6 SII's, 10 minutes each.  Not a bad haul!

I also set up a timelapse the second half of the night to get another round of the Milky Way rising since I needed more nighttime scenes for my TSP 2019 timelapse.

It was another all-nighter!  I got to bed at 6:45 AM!  And slept till 11:15 AM!  Only a couple of hours, but I also needed to eat.  A pretty good final night!

[ Update June 9, 2019 ] 

Centaurus A (but no B)

I went to process the Centaurus A image on May 26th, but alas, all of my blue filter images had a tree in them :/ I may be able to extract the blue from the luminance channel by subtracting the red and the green in some way, but a rough attempt didn't really work.  I will investigate it.  In the meantime, here's the luminance channel.

Date: 3 May 2019
Location: Texas Star Party, Fort Davis, TX
Object: Centaurus A (NGC 5128)
Attempt: 1
Camera: ZWO ASI1600MM Pro
Telescope: Borg 76ED
Accessories: Hotech field flattener, Starlight Xpress 5-position 2-inch filter wheel, 
Astronomik Type 2c LRGB 2-inch filters
Mount: Celestron AVX (borrowed)
Guide scope: Orion 50mm mini guide scope
Guide camera: QHY5L-II
Subframes: L: 17x180s
   Total: 1h37m
Gain/ISO: 139
Stacking program: PixInsight 1.8.6
Post-Processing program: PixInsight 1.8.6
Darks: 20
Biases: 20
Flats: 0
Temperature: -20C (chip)

It came out relatively sharp for being so low in the sky -- from the Texas Star Party, it only gets as high as about 14 degrees, which is well inside the thick part of the atmosphere.

Centaurus A is a rather unusual galaxy.  At only somewhere between 10-16 million lightyears (we're not sure which), it's the nearest strong radio-emitting active galactic nucleus to us.  Active galactic nuclei (AGN for short) are dense regions in the center of some galaxies that are far brighter than normal over some part of the electromagnetic spectrum.  They are particularly interesting because the characteristics of that light indicate that it's not actually from stars, but may instead be from the accretion disk of a supermassive black hole.  The most powerful AGNs are known as quasars, and we can see their light from sometimes billions of lightyears away.

M81 & M82

It came out great!  I wrote it up in the May 1, 2019 post here.

Elephant Trunk Nebula

This was another experiment in narrowband on the Takahashi, and though a little dim, came out quite nicely.

Date: 3 May 2019
Location: Texas Star Party, Fort Davis, TX
Object: IC 1396 Elephant Trunk Nebula
Attempt: 3
Camera: SBIG STF-8300M (Uncle Chris')
Telescope: Takahashi FSQ-106N
Accessories: SBIG filter wheel, Baader 8nm narrowband 36mm filters
Mount: Celestron AVX
Guide scope: Orion 50mm mini-guide scope
Guide camera: QHY5
Subframes: Ha: 5x600s
   OIII: 5x600s
   SII: 6x600s
   Total: 2h40m
Gain/ISO: N/A
Stacking program: 
Post-Processing program: 
Darks: 20
Biases: 20
Flats: 0
Temperature: -20C (chip)

When I combined the channels for this one, it looked a little off -- and then I realized that the trunk was blue and the background orange, unlike the rest of the Hubble palette images I saw on AstroBin.  So I still had two of the filters mixed up!  It turns out they're in order of SII, Ha, and OIII (which, conveniently for remembering, is the red-green-blue order of the Hubble palette).  So I swapped the SII and OIII filters, and then it looked right!

Elephant Trunk nebula in the middle of processing when I realized I had two channels swapped.

Here's my process.
- Master dark & bias previously generated
- Calibrated lights with master dark and superbias
- Applied weights with SubframeSelector
- Scale: 2.02 arcsec/px
- Gain: 0.37 e/ADU, 16-bit
- Noted highest-scoring frame
- Registered frames with StarAlignment, with highest-scoring frame as reference
- Stacked frames with ImageIntegration, Wisorized sigma clipping for rejection method
- Cropped with DynamicCrop
- Skipped DynamicBackgroundExtraction because it's like all nebula
- Denoised with MultiscaleLinearTransform, with extracted luminance mask
- Stretched with MaskedStretch
- Ha: 0.075 target background, rest default
- OIII: 0.15 target background, rest default
- SII: 0.2 target background, rest default
- Adjusted curves on each channel to improve contrast with CurvesTransformation
- Combined with ChannelCombination in Hubble palette SHO
- Did SCNR to kill green
- Adjusted color with curves
- Realized I had two filters switched (SII and OIII)...re-combined in right order!
- Applied HDRMultiscaleTransform, with range mask
- Adjusted curves with CurvesTransformation
- Saturation
- Reduced red background (tried using range selection inverted for this)
- Denoised with MultiscaleLinearTransform, with extracted luminance mask
- Reduced magenta stars tone
- Created mask with ColorMask script
- Dilated stars with MorphologicalTransform (MorphologicalSelection, 0.90, 5x5)
- Desaturated magenta with ColorSaturation
- Ran DarkStructureEnhance script
- Rotated 90 degrees couterclockwise with Rotation process

I'll likely mess with some more color schemes for this one too!  Pretty pleased with the result.