Abstract

The paper studies the effects of the space charge of emitted electrons on the electric field at the cathode surface in a planar vacuum diode with a field emission cathode. To analyze the phenomenon, Poisson's equation was solved numerically for different parameters of applied electric field and field enhancement factor in a finite-difference time-domain particle in cell simulation. The time-dependence of the electric field at the cathode surface for different cases has been compared with each other. It has been shown that the self-consistent electric field at the cathode surface oscillates at the local plasma frequency associated with the applied electric field and finally yields a steady state, and the electric field completely determines the extracted field emission current density.

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