Grating equation — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The law that only asks about one component
A boundary between two media cannot change the part of a wave that runs along it, because both sides have to agree on the phase at every point of the surface at every instant. That single restriction produces the refracted ray, the critical angle, the evanescent field and every order of a diffraction grating, out of one drawing made with a compass.
When the source is not heard all at once
The dipole approximation is not a statement that a source is small. It is a statement that every part of it is heard at the same retarded time, and dropping that assumption turns one source into a sum over a source. The sum is the same one a diffraction grating performs over its slits, with the same first null and the same extra orders — so a phased array and a grating are one piece of arithmetic met twice.
Named alongside it
The objects these essays reach for when they reach for this one.
Phase matchingApertureArray factorBeam formingBoundary conditionDiffractionDipole radiationDispersion relationEvanescent waveGuided modeInterferenceRadiation