Exchange length — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The first length that belongs to the substance
Every length in magnetism so far has been a length of the sample — a demagnetising factor is a shape, an avalanche cutoff is a sample's own restoring field. A domain wall's width is not. It is √(A/K), made of two material constants and nothing else, and across seven ordinary magnets it runs from two and a half nanometres to nine hundred.
The magnet that reverses where its crystal is weakest
A perfect crystal of neodymium-iron-boron should hold its magnetisation against a reverse field of 7.7 tesla. The best magnets made of it give way at one to three. The shortfall, known for eighty years as Brown's paradox, is not a failure of the crystal but of its edges: reversal begins wherever the crystal is weakest, in a layer a few nanometres thick. Working out how weak that layer can afford to be turns out to be a problem already solved in quantum mechanics — the nucleation field is the ground-state energy of a particle in a well shaped like the defect.
Named alongside it
The objects these essays reach for when they reach for this one.
CoercivityDemagnetising fieldDomain wallAnisotropyEigenvalueExchange interactionHysteresisMagnetic anisotropyMagnetisationNucleationSchrodinger equationSingle-domain