Disorder — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
Below the gap, where there is nothing to absorb
A semiconductor is supposed to be transparent below its band gap, and it is not. The absorption falls exponentially instead, over seven decades, along a straight line whose slope is an energy of a few millielectronvolts — and the description that produces that line has no states in the gap at all. What the slope measures is how much the gap itself is moving about.
The walk that interference can stop
Light scattered many times walks through a cloud, and a walk always gets through eventually — a slab twice as thick lets through half as much. Keep the waves' interference instead of adding intensities, and in one dimension the same disorder does something a walk cannot: it stops the light exponentially, traps it in modes with nothing special about where they sit, and turns transmission from a number into a spread over powers of ten. Whether the same can happen to light in three dimensions has been claimed, retracted and argued for thirty years.
Named alongside it
The objects these essays reach for when they reach for this one.
AbsorptionAnderson localisationApproximationAttenuationBand gapCoherent backscatteringDensity of statesDiffusionExponentialInterferenceMeasurementMultiple scattering