Light emitting diode — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The glow that carries a voltage
Thermal radiation has no chemical potential, because walls make and destroy photons freely. A light-emitting diode is a body that glows at room temperature with a voltage written into its light — Planck's law with the voltage as the photons' chemical potential — which is why its light can be as bright as a surface thousands of kelvin hot, why at low voltage it can put out more light than the power it draws and cool itself doing so, and why a reverse voltage makes a surface look colder than it is.
The product doping cannot move
Add one phosphorus atom for every five million silicon atoms and the crystal's free electrons multiply a millionfold — and its holes fall a millionfold, although nothing was done to them. Add a drop of acid to water and the hydroxide ions vanish in exactly the proportion the hydrogen ions grow. Both are one law: when a reaction makes two species together, equilibrium fixes the sum of their chemical potentials, and so the product of their concentrations. Every semiconductor device is built on the minority carriers that law leaves behind.
Named alongside it
The objects these essays reach for when they reach for this one.
Band gapChemical potentialDetailed balanceBlackbodyThe Boltzmann factorBrightness temperatureChemical equilibriumDopingEquilibrium constantHeat pumpPhotonSemiconductor