Fractional revival — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The return a classical cloud never makes
Put a swinging quantum packet in a well whose frequency depends a little on the amplitude and it spreads round its orbit until its swing has vanished. That part is not quantum at all: a cloud of classical oscillators does exactly the same. What no classical cloud can do is come back — and the quantum packet reassembles whole, on schedule, splitting into copies on the way, because its energies are discrete.
The probability that goes below zero
Classical mechanics describes an uncertain state as a cloud of points in the plane of position and momentum. Quantum mechanics has an exact counterpart, the Wigner function, whose shadows are the true position and momentum distributions — and which goes negative. It goes negative for a single photon, for every superposition of two packets, and for every pure state that is not a Gaussian. Where it is negative no classical cloud can imitate the state, and losing energy to the surroundings erases the negative regions first.
Named alongside it
The objects these essays reach for when they reach for this one.
Classical limitCoherent stateCorrespondence principleSuperpositionAnharmonicityDecoherenceDensity matrixDephasingEnergy levelsInterferencePhase spaceQuantum revival