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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Macroscopic effects on high-order harmonic generation in disordered semiconductors
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Macroscopic effects on high-order harmonic generation in disordered semiconductors

机译:对无序半导体中的高阶谐波产生的宏观效应

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We adopt a multi-scale approach to study macroscopic effects on the high-order harmonic generation (HHG) in disordered semiconductors. The propagation of the electromagnetic field is obtained by solving macroscopic Maxwell equations, while the corresponding response of the semiconductor to the electromagnetic field is simulated by solving the microscopic one-particle density matrix equation in the two-band approximation. We compare the results obtained for perfect and disordered crystals. It is found that for the solid HHG radiation to possess spectral features that are consistent with experimental findings, it is important to properly include the effects of both crystal disorder, to a greater extent, and the macroscopic propagation of the electromagnetic field, to a lesser extent, in the theoretical simulations of the corresponding solid HHG experiments. (C) 2019 Optical Society of America
机译:我们采用多种尺寸方法来研究宏观效应对无序半导体中的高阶谐波产生(HHG)。 通过求解宏观麦克斯韦方程来获得电磁场的传播,而通过在双频近似下求解微观单粒子密度矩阵方程,模拟半导体对电磁场的相应响应。 我们比较为完美无序的晶体获得的结果。 结果发现,对于固体HHG辐射具有与实验结果一致的光谱特征,重要的是正确地包括晶体障碍的效果,更大程度地和电磁场的宏观传播较小 程度,在相应的固体HHG实验的理论模拟中。 (c)2019年光学学会

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