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Heating of nonequilibrium electrons by laser radiation in solid transparent dielectrics

机译:在固体透明电介质中通过激光辐射加热非平衡电子

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摘要

A computer simulation of the heating of nonequilibrium electrons by an intense high-frequency electromagnetic field leading to the bulk damage of solid transparent dielectrics under single irradiation has been carried out. The dependences of the avalanche ionization rate on threshold field strength have been derived. Using the Fokker-Planck equation with a flux-doubling boundary condition is shown to lead to noticeable errors even at a ratio of the photon energy to the band gap ~0.1. The series of dependences of the critical fields on pulse duration have been constructed for various initial lattice temperatures and laser wavelengths, which allow the electron avalanche to be identified as a limiting breakdown mechanism. The ratio of the energy stored in the electron subsystem to the excess (with respect to the equilibrium state) energy of the phonon subsystem by the end of laser pulse action has been calculated both with and without allowance for phonon heating. The influence of phonon heating on the impact avalanche ionization rate is analyzed.
机译:已经进行了计算机模拟,该模拟通过强高频电磁场加热非平衡电子,导致单次辐照对固态透明电介质造成整体破坏。得出了雪崩电离速率对阈值场强的依赖性。将Fokker-Planck方程与通量加倍的边界条件一起使用,即使在光子能量与带隙之比约为0.1的情况下,也会导致明显的误差。已经针对各种初始晶格温度和激光波长构造了临界场对脉冲持续时间的一系列依赖性,这使得电子雪崩可以被识别为极限击穿机制。在有和没有允许声子加热的情况下,已经计算出了在激光脉冲作用结束时电子子系统中存储的能量与声子子系统的多余能量(相对于平衡状态)之比。分析了声子加热对冲击雪崩电离速率的影响。

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