Earlier quoted context omitted.
- "diffuse objects with low surface brightness" Are things amateur photographers with small telescopes (and lots of patience) sometimes discover, https://old.reddit.com/r/space/comments/13uco46/i_discovered... ( "I discovered this planetary nebula using a $500 camera lens, now it carries my name" ) https://www.astrobin.com/i9yy6f/ (18 hours!)
I still don’t understand how objects in space of that angular diameter are still being discovered. I would have to imagine lots of people have seen it, but just never chose to document or catalog it?
Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
21–30 of 82 posts
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#22Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
Not a professional so take this with a grain of salt but my guess would be weight first and foremost. From what I understand geostationary orbit isn’t cheap to get to and each added kilogram increases cost significantly. These lenses while not incredibly heavy are heavy enough to add a fair amount of cost.
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#23Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
- cost to get into geostationary orbit might dominate the value/saving of the cheap instrument, so it might be smart to spend more on that - managing and controlling it might be very challenging - need to get the data down from it - might create difficulties and costs that kill the value - heating and cooling in space might kill it - radiation in space might kill the hardware - acceleration during launch might kill the hardware - the payload needs to be stable during launch or there will be an accident - scientific value might be lower than other missions for similar spend
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#24Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
Once in space they cannot tweak the array.
Launch weight and stresses would damage this array.
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#25Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#26Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#27Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#28RAIT (Redundant Array of Inexpensive Telephoto lenses)?
Not that inexpensive - that's a $12000 lens with a nearly 6" aperture. The telescope itself is a fairly specialized instrument. It's more like a redundant array of very fast (for a telescope) lenses. From the paper: "Our primary goal is to test predictions that at very low surface brightness levels galaxies display a wealth of structures that are not seen at higher surface brightness levels." (But yes, the lenses are…
I work with microscopes that cost $1M and just sit in a lab. That's not atypical for an academic or industrial microscope.
One of the biggest issues in modern science is that to make many discoveries you need to pay very high prices to get the latest and greatest hardware. I've been exploring how to make lower cost telescopes and microscopes (and definitely love this project), that are "good enough" to open up new areas of research/discovery for people with budgets in the $1K-10K range. But it's hard! So far I have mostly been relearning what people already knew in the 1800s and early 1900s, that is easily obtained off-the-shelf tech today.
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#29Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
/not an astrophotographer
Re: Dragonfly: An optical telescope built from an array of off-the-shelf Canon lens
#30Can someone smarter than me explain why astronmers can't stick something like this on the back of an existing geostationary platform (like what is used for the XM radio sattelites) and get amazing data out of them? Surely sticking something like this array 100km into space will yield better results without the overhead of a 20 year mission plan like James Webb or Hubble.
The disadvantage is that it is in space, you have to spend 10x or 100x as much making something that can work in space, and you can't maintain it. I bet it would be much better to spend that money making dozens of these around the world, or iterating on the design.
The other advantage is that atmosphere is opaque for some wavelengths. The infrared wavelength that JWST looks in are absorbed. It also helps to be able to cool down the detectors to lower temps. One reason we aren't seeing direct replacement for Hubble is that the big ground telescopes with active optics are as good.