The Gunn–Peterson trough — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
A trough that proves the forest survived
A uniform neutral medium at redshift six would absorb Lyman alpha with an optical depth of four hundred thousand. So the existence of any transmitted light in a quasar's spectrum is a measurement — of a neutral fraction below one part in ten thousand — made from a detection rather than from an absorption.
It ends when the walls meet
Reionisation is usually described as the universe becoming transparent, which makes it sound like a change of state. It is not. Each young galaxy opens a bubble of ionised gas around itself and recombination closes it again, and what ends the epoch is geometric — the bubbles meet, and the last neutral walls between them disappear.
A forest with no continuum left
Measuring how much neutral hydrogen sits between here and a distant quasar means measuring the fraction of its light that survives, which means knowing how much light there was. At high redshift nothing survives at the wavelengths that would show it, so the level is extrapolated across the region being measured — and the optical depth is the logarithm of a number divided by a guess.
Named alongside it
The objects these essays reach for when they reach for this one.
Optical depthIntergalactic mediumThe Lyman-α forestNeutral fractionRecombinationReionisationSaturationThomson scatteringClumping factorContinuum placementEffective optical depthEscape fraction