Black hole spin — where it appears
Named by 3 essays across 2 fields — each of them below, with the objects they name alongside it.
Also named here as kerr metric — the same set of essays touches all of them, so they are one junction rather than several.
The second number a black hole has
A black hole in equilibrium is described by its mass and its spin, and nothing else. The mass decides how strongly it pulls. The spin decides how much light a kilogram of infalling matter can emit before it disappears — and between the two extremes that figure changes by a factor of seven.
A spin that is one length in disguise
Both ways of measuring a black hole's spin from its light measure the same thing — where the accretion disc stops — and convert it through the same relation. That conversion is stiff at high spin and slack at low, so the published spins near one are the trustworthy ones and the published spins near a third are barely measurements.
The line a star is swallowed at is not the horizon
A star torn apart by a black hole makes a flare, and a star swallowed whole makes nothing, so the heaviest hole that can produce a flare is a measurement. That ceiling is set not at the horizon but at the closest orbit from which infalling matter can still come back out — twice as far out for a hole that does not spin, and moved by a factor of five by the hole's rotation.
Named alongside it
The objects these essays reach for when they reach for this one.
Kerr metricAccretion discEvent horizonFrame draggingInnermost stable circular orbitIron lineRadiative efficiencyRelativistic beamingAngular momentumContinuum fittingEddington limitEffective potential