Decay length — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The last atom does all the seeing
A tunnelling rate falls by a factor of eight for every tenth of a nanometre of extra barrier, which is normally quoted as the reason nothing ever tunnels anywhere. Read the other way it is a microscope: the second-nearest atom of a blunt metal tip carries a two-hundredth of the current the nearest one does, so a tip nobody sharpened resolves a single atom, and the resolution comes from an exponential rather than from any piece of engineering.
The turns a muon makes at any energy
A muon lives two microseconds, and in a storage ring it lives longer the faster it goes, because its clock runs slow. Its orbit runs slow too: a faster muon carries more momentum, bends less in the same field and takes longer to go round. The two slowings are the same factor of gamma, so they cancel. A muon in a 1.45 tesla ring makes 431 turns in a mean life whether it is moving at nine-tenths of the speed of light or at nine nines, and the only way to more turns is a stronger magnet. The same cancellation is why the first cyclotrons stopped working near twenty million electronvolts.
Named alongside it
The objects these essays reach for when they reach for this one.
Cyclotron frequencyDensity of statesEvanescent waveExponential sensitivityFeedbackThe Lorentz factorMean lifeMuonParticle acceleratorPiezoelectricResolutionScanning tunnelling microscope