Inverse distance ladder — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
The same constant, measured twice, five sigma apart
The distance ladder gives an expansion rate of about 73 kilometres per second per megaparsec. The microwave background gives 67.4. Both quote errors near one per cent, both have been rebuilt from scratch by rival teams, and the gap between them has grown as the measurements have improved.
The same ruler measured twice, ten billion years apart
The sound wave that produced the acoustic peaks in the microwave background also left a faint excess in how galaxies are spaced, at a separation of about a hundred megaparsecs. It is the only cosmological distance indicator whose length is set by physics rather than by a chain of calibrations.
A constant that is an angle divided by a length
The microwave background does not measure an expansion rate. It measures one angle — the apparent size of the sound horizon at recombination — to a part in three thousand, and converting that angle into a rate requires the horizon's physical length, which is computed from a model of the first four hundred thousand years rather than observed.
Named alongside it
The objects these essays reach for when they reach for this one.
Sound horizonHubble constantHubble tensionStandard rulerAlcock paczynskiAngular scaleBaryon acoustic oscillationsComoving separationCorrelation functionDegeneracyDistance ladderDrag epoch