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The physics of ion impact cathode heating

机译:离子冲击阴极加热的物理原理

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The heating of a metal surface by ion impact is described by a coupled electron and phonon model that follows from recent research on femtosecond laser heating of metals. The conduction electrons of the metal are directly heated to very high temperature by the impinging ion and then on a longer time scale transfer their energy to the lattice. This results in very efficient heating of the lattice. These processes are described by coupled partial differential equations for the electron and lattice temperatures. The results from three‐dimensional numerical solutions of these equations are presented.
机译:离子撞击对金属表面的加热由耦合的电子和声子模型描述,该模型遵循最近对金属飞秒激光加热的研究。金属的传导电子通过撞击离子直接加热到非常高的温度,然后在更长的时间尺度上将其能量传递到晶格。这导致晶格的加热非常有效。这些过程由电子和晶格温度的耦合偏微分方程描述。给出了这些方程的三维数值解的结果。

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