Time-delay — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
Weighed by the light that bends past it
Every other mass in this collection is measured from something orbiting, which requires the system to have settled down. A gravitational lens weighs whatever is in the way with no such assumption — the light does not care whether the mass is in equilibrium.
A distance measured with a stopwatch
The images of a lensed quasar sit at the stationary points of an arrival-time surface, and the height between two of them is a delay in days. That delay is proportional to a distance, and the distance is proportional to one over the Hubble constant — so a flickering quasar gives H₀ with no ladder under it.
A sheet of mass that changes nothing but the answer
A gravitational lens's images are unchanged by adding a uniform sheet of matter and rescaling the source. Every position, every shape and every flux ratio stays exactly as it was; only the time delays change, in proportion. So a Hubble constant measured from a delay is multiplied by a number the lensing itself cannot determine.
Named alongside it
The objects these essays reach for when they reach for this one.
ConvergenceThe mass-sheet degeneracyEinstein radiusHubble constantLens modelLine of sight structureCritical surface densityDark matterDeflection angleExact degeneracyFermat-potentialGravitational lensing