Magnetic trap — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The antiatom that had to be weighed anyway
Every test of the equivalence principle for three centuries compared two lumps of ordinary matter. Whether antimatter falls down was settled on paper in the 1950s, by an engine that would run for ever if it fell up and by the electrostatic energy of nuclei, part of which is carried by fleeting positrons. It was not measured until 2023, because on a charged antiparticle gravity is ten million times weaker than a field of one volt per metre. The measurement needed neutral antihydrogen, held at half a kelvin in a magnetic bottle a quarter of a metre tall and let out over twenty seconds. It falls down, at 0.75 g with an uncertainty of a fifth of a g.
The window a spinning magnet floats in
No arrangement of fixed magnets can hold another magnet still in mid-air, and a spinning top made of a magnet floats above a magnetised base for minutes. The spin does not cancel the theorem; it changes what the top's energy depends on, from one component of the field to the field's strength, which can have a minimum. But the minimum exists only in a band of height a few millimetres thick, for a weight right to a couple of per cent, at a spin neither too slow nor too fast, and the well holding the top is about as deep as the energy of a twenty-gram weight dropped fifty micrometres.
Named alongside it
The objects these essays reach for when they reach for this one.
Adiabatic invariantAntihydrogenAntimatterCpt symmetryEarnshaw theoremEotvos experimentEquivalence principleGyroscopeMagnetic dipoleMagnetic levitationPerpetual motionPrecession