Inverse Compton scattering — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside 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 null that moves with the temperature
The frequency at which a cluster's hot gas vanishes from the microwave sky was derived for slow electrons. The electrons in a massive cluster move at a quarter of the speed of light, the null drifts half a gigahertz per keV, and what is left at the old frequency reads as a velocity as large as the ones being sought.
Named alongside it
The objects these essays reach for when they reach for this one.
Compton y parameterIntracluster mediumSpectral distortionThe Sunyaev–Zel'dovich effectAngular-diameter distanceCluster mass functionCosmic microwave backgroundHydrostatic biasHydrostatic massIntegrated yKinematic sunyaev zeldovich effectOptical depth