Diffractive Solar Sail
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Diffractive Solar Sail
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Re: Diffractive Solar Sail
#2That being said, Rochester is an up and coming city and I say that more emphatically with each passing year. Pittsburgh is a great case study, but when combined with a Great Lake, quality of life, infrastructure for big business (including the people and schools who are still there), and the talent that closely surrounds the city on all sides (Boston, NYC, Toronto, Chicago, Pittsburgh), future growth is inevitable.
Re: Diffractive Solar Sail
#3What is interesting to me is that you should be able to stretch the grating (as well as rotate relative to perpendicular incidence) to change the effective periodicity/wavelength, and also what effect that would actually have (on angle and efficiency).
Perhaps one advantage of refracting diffraction is that blue light (with the largest momentum) might bend to larger angles? But that would also depend on the grating size/angle. A rotating grating with a blaze angle might allow the most flexibility.
Re: Diffractive Solar Sail
#4Perhaps that's offset by the other advantages, but this is not clear.
Re: Diffractive Solar Sail
#5The Wikipedia article lists several advantages relative to reflective solar sails, but there's also a major disadvantage not mentioned. A reflected photon imparts twice its momentum to the solar sail, whereas a diffracted photon imparts only a small portion of its momentum. The overall thrust would therefore be much lower than a reflective solar sail. The fact that "photons can be reused... by passing through a secon…
Re: Diffractive Solar Sail
#6The Wikipedia article lists several advantages relative to reflective solar sails, but there's also a major disadvantage not mentioned. A reflected photon imparts twice its momentum to the solar sail, whereas a diffracted photon imparts only a small portion of its momentum. The overall thrust would therefore be much lower than a reflective solar sail. The fact that "photons can be reused... by passing through a secon…
A reflected photon can only impart half of its momentum before it's barreling off away from you.
Several layers of diffractive sails would seem to be able to (at least theoretically) exceed that.
Re: Diffractive Solar Sail
#7With reflection, I see how you can harvest energy through red-shift (the reflected photon ends up with a lower frequency after it bounces due to Doppler effect, which means it lost energy and gave it to the sail as kinetic energy), but here I don't really understand were the energy comes from.
Re: Diffractive Solar Sail
#8The Wikipedia article lists several advantages relative to reflective solar sails, but there's also a major disadvantage not mentioned. A reflected photon imparts twice its momentum to the solar sail, whereas a diffracted photon imparts only a small portion of its momentum. The overall thrust would therefore be much lower than a reflective solar sail. The fact that "photons can be reused... by passing through a secon…
Re: Diffractive Solar Sail
#9The Wikipedia article lists several advantages relative to reflective solar sails, but there's also a major disadvantage not mentioned. A reflected photon imparts twice its momentum to the solar sail, whereas a diffracted photon imparts only a small portion of its momentum. The overall thrust would therefore be much lower than a reflective solar sail. The fact that "photons can be reused... by passing through a secon…
I'm not sure that's necessarily the case. A reflected photon can only impart half of its momentum before it's barreling off away from you. Several layers of diffractive sails would seem to be able to (at least theoretically) exceed that.
Re: Diffractive Solar Sail
#10Earlier quoted context omitted.
I'm not sure that's necessarily the case. A reflected photon can only impart half of its momentum before it's barreling off away from you. Several layers of diffractive sails would seem to be able to (at least theoretically) exceed that.
A reflected photon imparts twice its momentum.