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Theory of plane wave diffraction in Fabry-Perot interferometers with built-in thin and thick gratings

机译:内置薄型和厚厚度的法布里 - 珀罗干涉仪平面波衍射理论

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The theoretical investigations of diffraction of light beams on phase sinusoidal diffraction grating placed between parallel mirrors of a Fabry-Perot interferometer are carried out. The problem is solved on the basis of Maxwell equations in the approximation of plane waves. The numerical analysis indicates that the power of beam incident on interferometer with a built-in diffraction grating undergoes strong redistribution between diffraction orders depending on such parameters as angle of incidence, initial detuning from the interference maximum and index of phase modulation. This feature provides the opportunity to use such grating-interferometer as an amplitude-phase modulator and a spatial switch of a new type. If nonlinear optical media are used as an intermediate layer and grating is formed by interferencing light beams, then the parameters of such a modulator can be changed and controlled optically.
机译:进行了放置在法布里 - 珀罗干涉仪的平行镜之间的相位正弦衍射光栅上光束衍射的理论研究。在平面波近似的麦克斯韦方程的基础上解决了问题。数值分析表明,在衍射仪上发生在干涉仪上的光束功率在衍射终点之间经历强烈的再分配,这取决于此类参数作为入射角,从干扰最大值和相位调制指数初始失真。该功能提供了使用这种光栅干涉仪作为幅度相位调制器的机会和新型的空间开关。如果使用非线性光学介质作为中间层和光栅通过干扰光束形成,则可以光学地改变和控制这种调制器的参数。

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