Shell-burning — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The star that swells because its centre shrank
A helium core contracts, and the envelope around it expands by a factor of sixty. The central density rises at the same time as the radius, which is the opposite of what a self-gravitating body is expected to do, and a burning shell between the two is the whole reason it happens.
A core too heavy for the gas around it
When a star's centre runs out of hydrogen, the helium left behind stops making energy, settles to one temperature, and becomes the one member of the polytrope family with no surface of its own. It can hold up the envelope around it only while it is less than about a tenth of the star. Past that there is no balance to be had, and the star crosses to the giant branch in a few per cent of its lifetime — which is why that part of the diagram is empty.
Named alongside it
The objects these essays reach for when they reach for this one.
Colour magnitude diagramDegeneracy pressureHydrostatic equilibriumStellar evolutionEffective temperatureEvolutionary trackGiant branchHelium flashIsothermal sphereKelvin helmholtz timescaleLane emden equationMean molecular weight