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Static and dynamic two-wave mixing in GaAs

机译:GaAs中的静态和动态两波混合

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摘要

We studied the two-wave mixing anisotropic diffraction process in GaAs for demodulation of static and dynamic phase encoded signals. The static results quantitatively agreed with a previous theoretical model for cubic crystals. This model has been described explicitly for all beam polarizations and crystal rotation angles with respect to the plane of incidence. Dynamic phase modulation, in which the signal beam was phase modulated at frequency f_(s) and the reference beam at f_(r)=f_(s)+△f, produced a signal at △f that was proportional to the difference between the static beam intensities with and without two-wave mixing under all conditions of polarization and crystal orientation studied. A significant dynamic output signal was produced even when only a shift in polarization but no energy transfer occurred as a result of the anisotropic two-wave mixing process. Therefore not only is the two-wave mixing gain important when the photorefractive effect is used for dynamic phase demodulation, but so are the polarization shifts occurring from the mixing process.
机译:我们研究了GaAs中的两波混合各向异性衍射过程,用于解调静态和动态相位编码信号。静态结果在定量上与先前的立方晶体理论模型一致。已经针对所有光束偏振和相对于入射平面的晶体旋转角明确描述了该模型。动态相位调制,其中信号光束以频率f_(s)进行相位调制,参考光束以f_(r)= f_(s)+△f进行相位调制,产生的△f信号与频率之间的差成比例。研究了在偏振和晶体取向的所有条件下有和没有两波混合的静态光束强度。即使由于各向异性的两波混合过程而仅发生极化偏移但没有发生能量转移,也会产生显着的动态输出信号。因此,当光折射效应用于动态相位解调时,不仅两波混合增益很重要,而且混合过程中发生的偏振位移也很重要。

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