Adaptive optics — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
How accurate a mirror has to be
The pupil's amplitude decides the rings; its phase decides the peak. A wavefront error of a fourteenth of a wave root-mean-square leaves eighty per cent of the peak intensity, which is the whole of what 'diffraction-limited' means — a convention laid over a computed number. And the number barely depends on what the error is, only on how large: four quite different aberrations of the same magnitude give nearly the same answer.
The surface every ray is normal to
Light from a point, bent by any number of lenses and mirrors, comes out as a tangle of rays that no longer meet anywhere. Hidden in the tangle is a surface every ray crosses at a right angle: the set of points the light reaches at the same optical time. That a surface always exists is a theorem two centuries old, and it is the reason a modern wavefront sensor works — an array of tiny lenses measures only the direction each patch of light is travelling, and the measurements can be added up into a shape only because they are the slopes of one.
Named alongside it
The objects these essays reach for when they reach for this one.
AberrationWavefrontApproximationDiffractionFermat's principleFourier transformGradientOptical path lengthOptical vortexPoint-spread functionRay opticsScattering