Saha equation — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The electron that leaves because there is room
It takes 13.6 electronvolts to pull the electron off a hydrogen atom, the energy of a particle at a temperature of 158,000 kelvin. Hydrogen is half ionised at the surface of a star at 14,000 kelvin, in a thin nebula at 7,000, and in the early universe at under 4,000 — a fortieth of its binding energy. The electron leaves not because it has enough energy but because a free electron has so much more room to be in than a bound one, and at equilibrium room counts as much as energy. Saha's equation is that trade written down, and it turned out to be the key to what stars are made of.
The pressure that ionises
Squeeze a hot gas of hydrogen and Saha's equation says it recombines: a free electron has less room to be in, and room was what paid for its freedom. Squeeze it far enough and it comes apart again, completely, at any temperature — not because the room has grown but because the atom has nowhere left to be. Crowded to within a few atomic radii of each other, hydrogen atoms have no bound state, and their electrons, freed by pressure alone, form a metal. Deep inside Jupiter most of the planet's hydrogen is in that state.
Named alongside it
The objects these essays reach for when they reach for this one.
Chemical potentialIonisationThe Boltzmann factorDegenerate matterEntropyMetallic hydrogenMott transitionPressure ionisationQuantum concentrationRecombinationScreeningStellar spectra