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Three-dimensional polarization ray tracing in electro-optic crystals

机译:电光晶体中的三维偏振射线跟踪

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摘要

Electro-optic crystals are extensively utilized to manipulate polarized light. In this paper, a general and accurate three-dimensional polarization ray tracing calculus for characterizing the evolution of polarization state in electro-optic crystals is reported for the first time. The analytical formulas of the parameters describing the propagation properties of the light passing through an electro-optical crystal with an arbitrary incident direction are derived. The partial interference between the divergent light beams is considered in the proposed calculus. Both experiments and calculations on an electro-optic modulator based on a lithium niobate crystal over the azimuth angle of 0 degrees-360 degrees and the incidence angle of 0 degrees-3 degrees are presented as an example. The experimental results show very good agreement with the theoretical results.
机译:电光晶体被广泛用于操纵偏振光。 本文首次报道了一种用于表征电光晶体中偏振态演化的一般和精确的三维偏振光追踪阶段。 推导了描述通过具有任意入射方向的电光晶体的光的传播特性的参数的分析公式。 在所提出的微积分中考虑发散光束之间的部分干扰。 基于铌酸锂晶体在0度-360度的方位角和0度-3度的入射角的基础上的实验和计算,作为示例。 实验结果表明,与理论结果非常好。

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