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- W2000439608 abstract "Both the current density and the distribution in energy of electrons emitted from metals are calculated for various combinations of temperature, applied surface electric field, and work function. A wider range of those variables than previously achieved is made possible by use of numerical integration. The integrand is the usual function based on the free-electron theory of metals and the wave-mechanical barrier transmission coefficient of Sommerfeld and Bethe which assumes a classical image force and a plane surface. Results, which are presented in graphical form, are consistent with the Fowler-Nordheim field emission equation for low temperatures, and with the Richardson thermionic emission formula at low fields. Predicted emission at temperatures up to 3000ifmmode^circelsetextdegreefi{}K is compared with cold emission at fields between ${10}^{7}$ and ${10}^{8}$ v/cm. A qualitative comparison is made between the present results and previous experiments on the transition between field emission and the vacuum arc." @default.
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- W2000439608 date "1954-07-15" @default.
- W2000439608 modified "2023-10-02" @default.
- W2000439608 title "Temperature-and-Field Emission of Electrons from Metals" @default.
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- W2000439608 doi "https://doi.org/10.1103/physrev.95.327" @default.
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