Hyperfine structure — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The line that takes eleven million years
A hydrogen atom in its ground state can flip its electron's spin relative to the proton's and emit a photon of 21 centimetres. Left alone, one atom takes eleven million years to do it. The Galaxy is nonetheless bright at that wavelength, because there is so much hydrogen, and because the flip is so slow that the line's brightness counts atoms without caring how hot they are.
The lines a warm vapour hides
Shine a tunable laser through a cell of rubidium vapour and the absorption is one smooth hump half a gigahertz wide, though the atoms' own lines are eighty times narrower and three of them lie inside it. The atoms are moving, each sees the light Doppler-shifted by its own speed, and their lines are smeared together. Send a second, stronger beam back the other way and narrow dips appear in the hump at exactly the frequencies of the hidden lines — because only atoms standing still can be talked to by both beams at once. The vapour stays at room temperature and the motion is not removed; it is selected against.
Named alongside it
The objects these essays reach for when they reach for this one.
Column densityDoppler broadeningFine structure constantLaserMagnetic dipole transitionNatural linewidthSaturationSpectral lineSpectroscopySpin temperatureSpontaneous emissionStatistical weight