Occultation — where it appears
Named by 3 essays across 3 fields — each of them below, with the objects they name alongside it.
The edge of a shadow is a wave
An asteroid's shadow has an edge because the asteroid is large. The Moon's does not — at visible wavelengths and lunar distance the edge of a shadow is ten metres wide, so a lunar occultation is a diffraction pattern sweeping past at half a kilometre a second, and how blurred its fringes are is the star's own diameter.
An angle of five hundredths of an arcsecond
No telescope has ever resolved a star other than the Sun, and stellar diameters are measured anyway — by finding the separation of two apertures at which the star's interference fringes vanish. What that returns is an angle; the radius arrives only when a distance is brought in, and the distance is the worse-known half.
The planet is seen when it disappears
Half an orbit after the transit the planet passes behind its star, and the light that vanishes is the planet's own. Subtracting two brightnesses taken hours apart isolates a body nothing has ever resolved.
Named alongside it
The objects these essays reach for when they reach for this one.
Angular diameterDiffraction limitLimb darkeningAlbedoBrightness temperatureDay night contrastEffective temperatureEmission spectrumFresnel diffractionThe Fresnel scaleFringe contrastGranulation