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Light Diffraction and Polarization Effects in Isotropic Media with Acoustically Induced Anisotropy

机译:各向同性介质在声各向异性中的光衍射和偏振效应

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A theoretical model for the description of the optical diffraction phenomenon in an isotropic medium with ultrasonically induced anisotropy is presented. Ft is shown how to calculate the intensities and the state of light polarization in a specific order of diffraction, and numerical computations are performed in the case of fused silica. The polarization effects are discussed forRaman-Nath and Bragg type diffraction, and for diffraction under intermediate conditions, the main interest being on the latter case, It is seen that especially in the intermediate diffraction regime the polarization properties of the diffracted light show a very wide diversity. Although the state of polarization in a particular order of diffraction is mainly elliptical, linear and circular polarization may occur at suitable combinations of the sound frequency and amplitude, especially in the zero order. The possibility to create Bragg effects at higher order Bragg angles is demonstrated as well, and the accompanying polarization properties are discussed.
机译:提出了一种用于描述各向同性介质中超声各向异性的光学衍射现象的理论模型。 Ft示出了如何以特定的衍射顺序计算光偏振的强度和状态,并且在熔融二氧化硅的情况下进行了数值计算。讨论了拉曼-纳特(Raman-Nath)和布拉格(Bragg)型衍射以及在中间条件下的衍射的偏振效应,主要关注后者。多样性。尽管以特定衍射级的偏振状态主要是椭圆形,但是线性和圆形偏振可能会在声音频率和振幅的适当组合下发生,尤其是在零级。还说明了在较高阶布拉格角上产生布拉格效应的可能性,并讨论了伴随的偏振特性。

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