Poincare sphere — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The phase that is only a shape
Take a beam of polarised light through a sequence of elements that returns it to the polarisation it started with, and it comes back with a phase it did not have before. That phase is not an optical path length — it does not depend on the thickness of anything, or on the wavelength, or on how slowly the sequence was carried out. It is minus half the area the path enclosed on the sphere of polarisation states, and nothing else.
The delay that is a random variable
A fibre's core is very slightly elliptical, so its two polarisations travel at very slightly different speeds — and the ellipse turns, at random, every hundred metres or so. The delays of the pieces do not add. They random-walk, so the total grows as the square root of the length, follows the same distribution as the speeds of gas molecules, differs from one wavelength to the next, and on any particular day may be three times its average.
Named alongside it
The objects these essays reach for when they reach for this one.
Adiabatic theoremBirefringenceDifferential group delayDispersionGeometric phaseInterferenceJones calculusMaxwell–Boltzmann distributionOptical fibreOutage probabilityPolarisationPolarisation mode dispersion