Fourier series — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
Also named here as harmonics — the same set of essays touches all of them, so they are one junction rather than several.
The field that turns with nothing turning
A coil fed with alternating current makes a magnetic field that grows, shrinks and reverses along the coil's axis and never leaves it. Put three such coils at 120° to one another and feed them currents a third of a cycle apart, and their fields add to one of constant strength that turns steadily round the centre — a rotating magnet made of nothing that moves. The trick is superposition read backwards: a field pulsing along a line is already two fields turning opposite ways, and the three coils are arranged so that one pair cancels and the other adds. Everything that goes wrong afterwards is a field turning the wrong way.
The bias a waveform can choose
A plasma between two identical electrodes, driven by a sine wave, has no reason to prefer either side, and it does not: no direct voltage appears. Add the second harmonic and it does, although the chamber is still symmetric, no direct current flows and the power spectrum does not depend on the phase between the two. The phase alone sets a bias of up to 0.44 of each harmonic's amplitude, of either sign, and moves the energy of the ions from one electrode to the other while their number stays put.
Named alongside it
The objects these essays reach for when they reach for this one.
HarmonicsCapacitive dischargeCircular polarisationInduction motorIon energyPhasePlasmaRotating magnetic fieldRotating wave approximationSelf-biasSheathSuperposition