The electronvolt is a unit of energy equal to the work done on a single electron moved through a potential difference of one volt. Its symbol is eV. Since the 2019 redefinition of the SI it has an exact value, 1.602176634 times ten to the power minus nineteen joules, because the elementary charge itself is now a defined constant.
It exists because the joule is hopelessly large for the atomic world. A single visible photon carries between about 1.6 and 3.3 electronvolts, and expressing that in joules requires nineteen leading zeros. Working in electronvolts lets a physicist state the energy of a chemical bond, an atomic transition or a subatomic collision as a number between one and a few, which is what a unit is supposed to do.
The scale organises whole disciplines. Chemistry lives at a few electronvolts, the energy of bonds and of the visible and ultraviolet photons that break them. X-rays occupy kiloelectronvolts. Nuclear physics works in megaelectronvolts, the scale of binding energies and radioactive decay. Particle physics uses gigaelectronvolts, where the proton's rest mass is 0.938, and teraelectronvolts at the Large Hadron Collider, whose protons carry 6.8 each.
Mass is quoted in the same unit through the mass-energy relation. A particle's rest mass is given in electronvolts divided by the speed of light squared, and physicists routinely drop the divisor and simply say that the electron is 511 kiloelectronvolts. The Higgs boson is 125 gigaelectronvolts on the same convention.
Semiconductor engineering depends on it. The band gap that determines what a material does electrically and optically is an energy in electronvolts: about 1.1 for silicon, 3.4 for gallium nitride, and this single number decides whether a device is a solar cell, a transistor or a blue light-emitting diode.
Astronomy inherits the convention for high-energy photons, so gamma-ray telescopes report observations in gigaelectronvolts and teraelectronvolts rather than in wavelengths.
Particle accelerators are named after the energies they reach, which is why their names track the prefixes. The Cockcroft-Walton machine that first split a nucleus in 1932 worked at a few hundred kiloelectronvolts; the Bevatron of the 1950s reached billions and found the antiproton; and the Large Hadron Collider brings protons to 6.8 teraelectronvolts each. Cosmic rays put all of this in perspective by arriving with energies up to 10 to the twentieth electronvolts, tens of millions of times more than any machine can produce, though only a handful of such particles strike the Earth in a century over a square kilometre.
One electronvolt equals about 1.602 times ten to the power minus nineteen joules, or roughly 3.83 times ten to the power minus twenty calories.
| Unit | Symbol | 1 Electronvolt equals | 1 of these equals | Converter |
|---|---|---|---|---|
| Nanojoule | nJ | 1.602176634 × 10-10 nJ | 6241509074.46 eV | Electronvolts to Nanojoules |
| Microjoule | µJ | 1.602176634 × 10-13 µJ | 6241509074461 eV | Electronvolts to Microjoules |
| Millijoule | mJ | 1.602176634 × 10-16 mJ | 6.24150907446 × 1015 eV | Electronvolts to Millijoules |
| Centijoule | cJ | 1.602176634 × 10-17 cJ | 6.24150907446 × 1016 eV | Electronvolts to Centijoules |
| Decijoule | dJ | 1.602176634 × 10-18 dJ | 6.24150907446 × 1017 eV | Electronvolts to Decijoules |
| Joule | J | 1.602176634 × 10-19 J | 6.24150907446 × 1018 eV | Electronvolts to Joules |
| Decajoule | daJ | 1.602176634 × 10-20 daJ | 6.24150907446 × 1019 eV | Electronvolts to Decajoules |
| Hectojoule | hJ | 1.602176634 × 10-21 hJ | 6.24150907446 × 1020 eV | Electronvolts to Hectojoules |
| Kilojoule | kJ | 1.602176634 × 10-22 kJ | 6.24150907446 × 1021 eV | Electronvolts to Kilojoules |
| Megajoule | MJ | 1.602176634 × 10-25 MJ | 6.24150907446 × 1024 eV | Electronvolts to Megajoules |
| Gigajoule | GJ | 1.602176634 × 10-28 GJ | 6.24150907446 × 1027 eV | Electronvolts to Gigajoules |
| Terajoule | TJ | 1.602176634 × 10-31 TJ | 6.24150907446 × 1030 eV | Electronvolts to Terajoules |
| Calorie | cal | 3.82929405832 × 10-20 cal | 2.61144739675 × 1019 eV | Electronvolts to Calories |
| Kilocalorie | kcal | 3.82929405832 × 10-23 kcal | 2.61144739675 × 1022 eV | Electronvolts to Kilocalories |
| Watt-hour | Wh | 4.45049065 × 10-23 Wh | 2.24694326681 × 1022 eV | Electronvolts to Watt-hours |
| Kilowatt-hour | kWh | 4.45049065 × 10-26 kWh | 2.24694326681 × 1025 eV | Electronvolts to Kilowatt-hours |