Stellar mass — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
Two scaling relations calibrated on one star
Asteroseismology gives a star's mass and radius from two numbers read off its oscillation spectrum. The two relations are exact in their exponents and approximate in their constants, and the constants were fixed by requiring that the Sun come out right — so an error of a few per cent in one observable is tens of per cent in a mass and nearly a factor in an age.
A threshold that makes iron matter only to giants
A star with twice the Sun's iron is four times as likely to have a giant planet, and barely more likely to have a small one. The steep law and the flat one look like two mechanisms. A core racing its disc, run over a spread of discs, produces both — steep where winning is rare, flat where it is common.
Named alongside it
The objects these essays reach for when they reach for this one.
Benchmark starConvective envelopeCore accretionError propagationFrequency of maximum powerGiant planetLarge separationMetallicityOccurrence rateProtoplanetary discRadial velocityRed giant