Adiabatic invariant — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The drift that does not care what the charge is
A charge in a uniform magnetic field goes round in a circle and arrives nowhere. Add anything at all — an electric field, gravity, a gradient in the magnetic field itself — and the circle's centre creeps sideways, at right angles to both. One of those drifts is the same for every particle regardless of charge, sign or mass; the others are not, and the difference decides what a plasma does.
The wall that moves while the ball is in flight
Energy is conserved because the rules do not depend on the time. Move the walls of a box and the rules do depend on the time, so what is inside gains or loses without limit — and how much depends entirely on how fast. Moved slowly, a wall takes energy at exactly the rate the adiabatic law says; moved faster than the ball travels, it takes none at all, and the same box is a piston or a vacuum according to a speed.
Named alongside it
The objects these essays reach for when they reach for this one.
ActionAveragingCollisionConfinementConservation of energyCosmic raysDriftElectric fieldEnergyGuiding centreIrreversibilityLarmor radius