Luminosity class — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
The second thing a spectrum says
Two stars of the same colour can differ in luminosity by ten magnitudes, and the difference shows in the widths of their lines rather than in which lines are present. That width is a pressure, the pressure is a gravity, and the gravity is a distance.
A luminosity class is a density measurement
The Saha equation has an electron pressure in its denominator, and a supergiant's photosphere is forty times less dense than a dwarf's at the same temperature. So the same element sits in different ionisation stages in the two, the spectrum says which, and the second axis of stellar classification is a barometer.
A spectrum with no continuum left in it
Below about four thousand kelvin a photosphere stops being a gas of atoms. Titanium oxide, water and carbon monoxide take over, the same equilibrium settles how much of each survives with a bond energy where an ionisation potential used to be — and the bands are so crowded that the level every line depth is measured against is nowhere on the plate.
Named alongside it
The objects these essays reach for when they reach for this one.
Electron pressureMK classificationPartition functionSaha equationSpectral classificationSurface gravityAbsolute magnitudeBond energyDamping wingsDissociation equilibriumEquivalent widthH minus opacity