Cosmic microwave background — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
The most perfect blackbody ever measured
The whole sky glows at 2.7255 kelvin, and its spectrum matches the Planck curve to fifty parts in a million. Nothing else in astronomy is thermal to a part in twenty thousand, and a spectrum that exact is not a description of the radiation — it is a constraint on the history of everything that could have disturbed it.
A shadow that does not get fainter with distance
Every other way of finding a cluster of galaxies gets harder the further away the cluster is. One does not. A cluster's hot gas scatters about one microwave background photon in a hundred to a higher frequency, and because the result is a fraction of a background rather than a flux from a source, the same cluster is exactly as detectable at ten billion light years as at one.
A velocity that has the colour of the sky
A cluster moving through the microwave background shifts the light it scatters by a common Doppler factor, which leaves a spectrum shaped exactly like a change of temperature. That shape is loudest precisely where the hot gas falls silent — and it is the one shape the background itself already has.
Named alongside it
The objects these essays reach for when they reach for this one.
Compton y parameterIntracluster mediumSpectral distortionThe Sunyaev–Zel'dovich effectThomson scatteringAngular-diameter distanceBlackbody spectrumCluster mass functionCorrelation functionEntropy per baryonGrowth rateHydrostatic mass