Bifurcation and Hysteresis in Vacuum Diodes
Ashmita Panda, Allen L. Garner
Abstract
For electrons with nonzero initial velocity u00 in vacuum, the space-charge-limited current density (SCLCD) is given by JJaffe. For current densities J>JJaffe, electron reflections occur along with virtual cathode (VC) oscillations. Past studies have exhibited hysteresis by sustaining these oscillations until J=Jhys, often claiming Jhys≈ JLD<JJaffe, where JLD, also called the bifurcation solution, represents the steady-state current density where the electron velocity is zero at the VC. In this study, we demonstrate that JLD is not a valid steady-state solution since it represents a higher charge density than JJaffe, the true SCLCD. We further demonstrate that JJaffe also corresponds to the true, mathematical bifurcation solution. Using particle-in-cell simulations across various gap distances and voltages, we demonstrate that Jhys consistently differs from JLD and can be represented by a simple semi-empirical relationship as a function of JJaffe/JCL, where JCL is the SCLCD in vacuum for u0=0.
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