Thermal activation — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
Nothing keeps a magnetisation for ever
A magnetised particle sits in a well with a barrier between it and the other direction, and a barrier of finite height is crossed eventually. So remanence has a lifetime, coercivity is a different number depending on how fast it is measured, and a grain below about twenty nanometres of iron forgets within a second at room temperature.
The circuit that goes through a wall
Tunnelling is usually told about electrons and alpha particles — single, small, quantum things passing through barriers they cannot climb. In 1985 it was seen in an electrical circuit: the phase difference across a Josephson junction, a coordinate shared by all the electrons in two pieces of superconducting metal, trapped in a well and escaping from it through the barrier rather than over it. The evidence was a temperature below which the circuit's escape rate stopped caring how cold it was. The same circuit showed discrete energy levels, and its descendants are the qubits of superconducting quantum computers.
Named alongside it
The objects these essays reach for when they reach for this one.
Arrhenius lawCoercivityDecoherenceDissipationHysteresisJosephson junctionMagnetic anisotropyMagnetisationMetastabilityQuantisationQubitRelaxation