Accretion — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
Also named here as eddington limit — the same set of essays touches all of them, so they are one junction rather than several.
The brightness a mass cannot exceed
Light pushes outward on the electrons of a star and gravity pulls inward on its protons, and both forces fall off as one over the distance squared. The distance therefore cancels, and what is left is a limit on brightness rather than on size — 3.8 × 10⁴ times the Sun's luminosity for every solar mass, above which a body drives its own outer layers away.
The gas a hole catches from far away
A particle drifting past a black hole is captured only if its aim is almost perfect; miss by a little and it swings round and leaves. Gas is different. Streams passing on opposite sides collide, lose their sideways motion as heat, and fall in, so a hole in warm gas draws from the whole sphere inside which its gravity beats the gas's thermal motion. Bondi worked out the flow in 1952: one steady solution passes smoothly from rest to free fall, it crosses the speed of sound at a single radius, and the rate it fixes grows as the square of the hole's mass — fast enough, left alone, to run away in a finite time.
Named alongside it
The objects these essays reach for when they reach for this one.
Eddington limitAngular momentumBernoulli equationBlack holeBondi radiusThe inverse-square lawLuminosityMach numberOpacityRadiation pressureSelf-gravitySound speed