Landau damping — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The wave that dies with nothing to rub against
Every damping in this collection so far removes energy from a wave and puts it somewhere warmer. This one removes it and produces no heat at all: there are no collisions in the equation, the entropy is unchanged, the whole thing runs backwards perfectly, and the wave still dies exponentially. What it dies into is structure in velocity too fine for a field to see.
The sound a plasma carries on its electrons' heat
Sound in a gas needs two things: something heavy to be pushed, and a pressure to push it. In an ordinary gas the same molecules supply both. In a plasma they can be split — the ions carry the inertia and the electrons, a thousand times lighter and often a hundred times hotter, carry the pressure — and the result is a sound that travels at a speed set by one particle's temperature and the other's mass. It travels only while the two temperatures stay far apart. Warm the ions to match the electrons and the sound dies within a cycle, with nothing to rub against.
Named alongside it
The objects these essays reach for when they reach for this one.
Debye lengthCollisionless plasmaDistribution functionElectron temperatureFree energyIon acoustic waveKinetic theoryPhase mixingPhase velocityPlasma frequencyPlasma oscillationQuasineutrality