Balloon-borne telescope returns first photos in search for dark matter
- Reference: 1682402891
- News link: https://www.theregister.co.uk/2023/04/25/balloonborne_telescope_returns_first_photos/
- Source link:
The Super Pressure Balloon-Borne Imaging Telescope, or SuperBIT, has returned two publicly-shared images so far: The one of the [1]Tarantula Nebula in the header of this article, and a second of a pair of colliding galaxies known as " [2]the Antennae ."
SuperBIT's main scientific objective is to measure the properties of [3]dark matter , a term given to the invisible-yet-mathematically-required quarter of the matter in the universe that we're unable to see or detect in any way other than its interactions with gravity.
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The telescope, a collaboration between the University of Toronto, Princeton University, Durham University and NASA, lifted off from New Zealand on April 16, and was carried to an altitude of 33.5 kilometers (20.8 miles) by one of NASA's stadium-sized super pressure balloons. At that altitude, SuperBIT is floating above all but the last half-percent of the Earth's atmosphere, giving it a level of visibility that ground-based telescopes can't match.
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Because it sits outside of most of the atmosphere, SuperBIT isn't limited by anything but the laws of optics, and is able to take images with resolutions as high as the Hubble Space Telescope. It's also the first balloon-borne telescope to be able to capture wide-field images.
"SuperBIT will test whether dark-matter particles can bounce off each other, by mapping the dark matter around clusters of galaxies that are colliding with neighbouring galaxy clusters," [7]said the University of Toronto.
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SuperBIT is taking images via practice known as [9]gravitational lensing , which takes advantage of how areas of dense gravity, like a pair of colliding galaxies or a massive stellar nursery, bend rays of light. Various theories suggest dark matter may slow down, spread or be chipped apart during a galactic collision, making the Antennae a particularly good observation point, according to the University of Toronto.
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SuperBIT's image of a pair of colliding galaxies known as The Antennae - Click to enlarge
Balloons'll break, but not the budget
While it's in the air, SuperBIT will [11]circumnavigate the southern hemisphere , taking images at night and using its array of solar panels to gather energy during the day. University of Toronto wasn't specific about the duration of the mission, and didn't respond to our email asking for some additional details.
[12]Chinese scientists calculate the Milky Way's mass as 805 billion times that of our Sun
[13]Launching soon: ESA's Juice to probe Jupiter's moons for signs of possible life
[14]Astronomers clock runaway black hole leaving trail of fresh stars
[15]Research raises questions: Are instruments taken to Mars sensitive enough to find life?
The University of Toronto adds that the telescope would be "carried by seasonally stable winds for about three months," which may point to its mission duration corresponding to how well its giant balloon keeps the 3,500 lb (1,587 kg) gondola in the air.
So, why put a 0.5m telescope with optical sensitivity from the near-infrared to the near-ultraviolet that's able to stabilize itself with sub-arcsecond precision on a balloon? That's SuperBIT's other scientific objective.
"One of SuperBIT's overarching science and technology development goals is to make rapidly-developed yet highly capable sub-orbital astronomical platforms more accessible to the astronomical community at a fraction of the cost of an equivalent space- or satellite-based system of equivalent capability," University of Toronto [16]said .
SuperBIT only cost around $5m (£4m), around 1,000 times less than an equivalent satellite, the University said. That includes the costs to get it into the air - just the price of helium instead of rocket fuel and associated ground equipment, man hours and launch fees.
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SuperBIT and NASA's super pressure balloon prior to launch in New Zealand - Click to enlarge
That, and SuperBIT is able to be returned to Earth safely on a parachute when its mission ends so it can be upgraded and relaunched. One upgrade is already planned once the telescope returns in a few months: It's getting a replacement that'll upgrade its aperture from 0.5m to 1.6m.
Funding for the upgrade has already been secured, meaning for its next mission SuperBIT will have ten times the ability to collect light and help scientists learn just what exactly dark matter gets up to out there in the depths of space. ®
Get our [18]Tech Resources
[1] https://www.theregister.com/2018/01/05/tarantula_nebula_massive_stars/
[2] https://www.nasa.gov/multimedia/imagegallery/image_feature_1086.html
[3] https://science.nasa.gov/astrophysics/focus-areas/what-is-dark-energy
[4] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=2&c=2ZEekyKg8JChjewQ@u6-@hAAAAFY&t=ct%3Dns%26unitnum%3D2%26raptor%3Dcondor%26pos%3Dtop%26test%3D0
[5] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZEekyKg8JChjewQ@u6-@hAAAAFY&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[6] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=3&c=33ZEekyKg8JChjewQ@u6-@hAAAAFY&t=ct%3Dns%26unitnum%3D3%26raptor%3Deagle%26pos%3Dmid%26test%3D0
[7] https://www.utoronto.ca/news/first-space-images-captured-balloon-borne-telescope
[8] https://pubads.g.doubleclick.net/gampad/jump?co=1&iu=/6978/reg_offbeat/science&sz=300x50%7C300x100%7C300x250%7C300x251%7C300x252%7C300x600%7C300x601&tile=4&c=44ZEekyKg8JChjewQ@u6-@hAAAAFY&t=ct%3Dns%26unitnum%3D4%26raptor%3Dfalcon%26pos%3Dmid%26test%3D0
[9] https://www.theregister.com/2015/03/06/galactic_lensflare_gives_boffins_an_astronomicalsized_time_machine/
[10] https://regmedia.co.uk/2023/04/24/superbit-antennae-galaxies-collision.jpg
[11] https://www.csbf.nasa.gov/map/balloon10/flight728NT.htm
[12] https://www.theregister.com/2023/04/24/asia_tech_news_roundup/
[13] https://www.theregister.com/2023/04/13/esas_juice_spacecraft_jupiter/
[14] https://www.theregister.com/2023/04/09/black_hole_stars/
[15] https://www.theregister.com/2023/02/21/research_mars_instruments/
[16] https://sites.physics.utoronto.ca/bit
[17] https://regmedia.co.uk/2023/04/24/superbit-launch-prep.jpg
[18] https://whitepapers.theregister.com/
Just wondering
Can it also look down ?
Re: Just wondering
I think someone else has already figured that possibility out....
Stabiliser?
How does it keep its position and orientation stable to take photos at the precision needed for astronomy?
It is still, of necessity, in the atmosphere, albeit a thin one, so are would still winds to knock it around.
Re: Stabiliser?
I'd assume some sort of gyroscopic gubbins or other means of lens stabilisation. I have a few lenses for my DSLR which include tiny motors to counteract any unsteadiness of hand - that's consumer/prosumer grade kit so I assume if you've got budget for doing proper space science stuff then similar tech is very much available.
Re: Stabiliser?
Orientation might involve some interesting engineering, position not so much. When you're taking images of something as distant as galaxies you'd need to go a lot further than a side-wind might take you to worry about parallax or focussing.
Missing word?
> the pictures are just as good if you get high enough
Should that sentence end with "man"?
Re: Missing word?
Dude! You're so right... I was wondering if this line came from a Cheech and Chong movie??
Re: Missing word?
Only when in class C airspace
Good job they chose the southern hemisphere. It'd probably get shot down otherwise.
Helium is cheaper than rocket fuel
But rocket fuel can easily be made from sustainable sources, whereas helium is a bit trickier to make. At some point rocket fuel will be cheaper than helium...
Parachute
Thanks for clarifying that; it seemed such an obvious thing if only to give someone standing underneath it when it decides to come down time to step smartly to one side.
A ton and a half landing on you can ruin your whole day.
Balloon telescope?
Nice idea!