首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Application of the Jones calculus for a modulated double-refracted light beam propagating in a homogeneous and nondepolarizing electro-optic uniaxial crystal
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Application of the Jones calculus for a modulated double-refracted light beam propagating in a homogeneous and nondepolarizing electro-optic uniaxial crystal

机译:琼斯微积分在均质且非去极化电光单轴晶体中传播的调制双折射光束中的应用

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摘要

The Jones matrix calculus is applied to an electro-optic crystal with uniaxial symmetry when the light beam is incident nearly normally on the crystal face. The approach allows one to treat refracted waves and rays that diverge in the crystal and are modulated by an external low-frequency field. The effect of partial interference of overlapping refracted beams is allowed for and calculated for the case of uniform intensity of the beam over its cross section. The method is employed to analyze optical systems containing an imprecisely cut and aligned electro-optic crystal plate.
机译:当光束几乎垂直入射到晶面上时,Jones矩阵演算将应用于单轴对称的电光晶体。该方法允许人们处理在晶体中发散并由外部低频场调制的折射波和光线。对于光束在其横截面上均匀强度的情况,允许并计算出重叠折射光束的部分干涉效应。该方法用于分析包含不精确切割和对齐的电光晶体板的光学系统。

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