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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Theoretical analysis of terahertz generation in periodically inverted nonlinear crystals based on cascaded difference frequency generation process
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Theoretical analysis of terahertz generation in periodically inverted nonlinear crystals based on cascaded difference frequency generation process

机译:基于级联差分频率产生过程的周期性倒置非线性晶体太赫兹产生的理论分析

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摘要

The characteristics of terahertz (THz) generation based on cascaded difference frequency generation (DFG) process in periodically inverted gallium arsenide (GaAs) and gallium phosphide (GaP) is calculated from coupled wave equations, in which the output enhancement factors are 5.4 and 3.9 in the two crystals, respectively, compared with DFG without cascading. The optimal interaction length, influence of crystal absorption, wave vector mismatch and pump intensity are analyzed. A short discussion on wavelength tuning is also given. The calculated optimal operating parameters and conclusions can provide good directions for the experimental design.
机译:根据耦合波方程计算了周期性倒置砷化镓(GaAs)和磷化镓(GaP)中基于级联差分频率产生(DFG)过程的太赫兹(THz)产生的特性,输出增强因子为5.4和3.9 in。这两个晶体分别与没有级联的DFG进行了比较。分析了最佳相互作用长度,晶体吸收的影响,波矢失配和泵浦强度。还简要讨论了波长调谐。计算得出的最佳运行参数和结论可以为实验设计提供良好的指导。

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