Volume-limited sample — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
A count with a knee in it
Count galaxies by luminosity and the answer is a power law at the faint end and an exponential cut-off at the bright one. Almost every galaxy is a dwarf; almost none of the light is in one; and the bend between those two statements is where galaxy formation stops being efficient.
A sample brighter than the population it came from
Every survey stops at some apparent brightness. At any distance it therefore contains only the objects luminous enough to make the cut, so the average object in it is brighter than the average object in the universe — by an amount that grows with distance and that has been shortening every distance in astronomy since 1920.
Named alongside it
The objects these essays reach for when they reach for this one.
CompletenessLuminosity functionMalmquist biasCharacteristic luminosityEddington biasFaint end slopeFeedbackFlux-limited sampleInverse regressionLuminosity densityNumber densitySchechter function