Earlier quoted context omitted.
Well in astronomy you usually want your telescope to be able to observe different targets. So it depends on the details of how the correction surface has to change when the image-object distance. If it's just a mild deformation and offset, then yeah I guess technology similar to adaptive mirrors could work well.
Distances are usually treated as infinity, at least in astrophotography. I'd be surprised if this secondary lens was able to distinguish between light coming from 1ly and 1000ly
Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
91–100 of 219 posts
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#92Earlier quoted context omitted.
It's really natural, on first mention, to refer to something using a member of the degenerate set of its most unique identifier, right? From that point on, to avoid repetition, mix in antecedents or generic names. Brands exploit this mechanic in language so that any time a, thereto unknown, good has to be addressed, that identification become advertising. It shifts from being a unique identification of an object/item…
Hazelnut spread is one of those things that is much more commonly referred to as the brand name. No one says "Reynolds wrap" they say "aluminum foil". No one says "hazelnut spread", they say Nutella. No one says "resealable sandwich bags", they say ziploc bags.
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#93Earlier quoted context omitted.
It's really natural, on first mention, to refer to something using a member of the degenerate set of its most unique identifier, right? From that point on, to avoid repetition, mix in antecedents or generic names. Brands exploit this mechanic in language so that any time a, thereto unknown, good has to be addressed, that identification become advertising. It shifts from being a unique identification of an object/item…
Hazelnut spread is one of those things that is much more commonly referred to as the brand name. No one says "Reynolds wrap" they say "aluminum foil". No one says "hazelnut spread", they say Nutella. No one says "resealable sandwich bags", they say ziploc bags.
Everyone says resealable bags. I've never even heard the word ziploc. In New Zealand.
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#94I don't think there is any economic significance. They found a closed-form formula, not a manufacturing process. They verified that it produces numerically correct results to 12 significant figures, but typical lens grinding is only accurate to about 100 nm; if your lens is 10 mm thick, that's an error in the 5th significant figure of any coordinate. Calculating a numerical solution to the Wasserman–Wolf problem to 5 significant figures is straightforward, and you could probably do it by hand if you didn't have a computer (although that would involve significant economic cost). In fact, it's not that hard to calculate it to 14 significant figures. The achievement is finding a closed-form solution rather than an iterative numerical approximation.
† Or Tutankhaten, as we used to call him.
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#95Will this have any implications for astronomy?
From another comment in this thread: "The author’s have a paper from March 2019 (in arXiv) that uses the result to build some novel telescope geometries."
There are some serious problems when building large telescope lenses; if they get too heavy, they start to deform under their own weight, and non-spherical shapes are hard and expensive to produce.
It would be awesome if this analytical solution inspired improvement in real applications, but I'm cautions about that.
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#96Does it solve chromatic aberration, or just spherical aberration?
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#97> After months of working on solving the problem, Rafael González recalls, “I remember one morning I was making myself a slice of bread with Nutella, when suddenly, I said out loud: Mothers! It is there!” > He then ran to his computer and started programming the idea. When he executed the solution and saw that it worked, he says he jumped all over the place. It is unclear whether he finished eating the Nutella bread.…
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#98> After months of working on solving the problem, Rafael González recalls, “I remember one morning I was making myself a slice of bread with Nutella, when suddenly, I said out loud: Mothers! It is there!” > He then ran to his computer and started programming the idea. When he executed the solution and saw that it worked, he says he jumped all over the place. It is unclear whether he finished eating the Nutella bread.…
Maybe it should have convinced him to procrastinate instead. Now, I know where all my inefficiency is coming from.
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#99I fully believe this will be the death of all but professional cameras in 5 years or less. (Yes, I know cameras are already in sharp decline, but I’m talking true death - bankruptcies and firms leaving the market).
Re: Goodbye Aberration: Physicist Solves 2,000-Year-Old Optical Problem
#100What am i missing?