Photonic crystal — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The mirror that works from every direction
A stack of alternating transparent layers reflects nearly all the light of one colour arriving straight on, and less as the light tilts, because tilting moves the forbidden band. A structure that repeats in only one direction ought therefore to be a mirror for only a range of directions. It is not, if the layers differ enough: light arriving from air cannot bring enough sideways momentum to escape the forbidden band at any angle, for either polarisation, and a flat stack of plastic and tellurium reflects every angle over a band of frequencies almost half as wide as its centre.
The pile of glass that stops every colour
A sheet of window glass reflects about eight per cent of the light that falls on it. A pile of a hundred sheets, George Stokes calculated in 1862, should still let through a tenth, because each extra sheet only adds a little more reflection to the total. That is right for sunlight, whose colours are too mixed to interfere. For a single colour, with every sheet and every gap a slightly different thickness, the same pile lets through a thousandth, and a pile of four hundred a hundred-millionth of a millionth. Interference with random phases does not average away into the intensity sum. In one dimension it traps every wave, at every wavelength, however weak each reflection is.
Named alongside it
The objects these essays reach for when they reach for this one.
Transfer matrixAnderson localisationBand gapBragg mirrorBrewster's angleDisorderInterferenceLight coneLocalisation lengthMultiple scatteringOmnidirectional reflectionPolarisation