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Beam expansion in thermo-optic-effect-induced total internal reflection and its applications in optical switches

机译:热光效应引起的全内反射中的光束扩展及其在光开关中的应用

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摘要

The beam-propagation characteristics of the total internal reflection (TIR) induced by the thermo-optic effect are investigated. Based on the Fourier heat-transmission principle and the variable separation method, we derive an analytical transient expression of the thermal field for general thermo-optic devices. With the analytical expression, the time response and steady-state temperature distribution of thermo-optic devices are presented. The beam expansion rule of TIR in the thermal field is developed mathe-matically, and a quantitative calculation is given as well. To illustrate the application of the rule, an X-junction 2 X 2 TIR switch with high reflection efficiency is designed through theoretical calculation. The simulation shows that the structure exhibits a high reflection coefficient; the reflection loss is only -0.76 dB. The simulation results agree well with the theoretical calculation.
机译:研究了由热光效应引起的全内反射(TIR)的光束传播特性。基于傅立叶热传递原理和变量分离方法,我们得出了一般热光器件热场的解析瞬态表达式。利用解析表达式,给出了热光器件的时间响应和稳态温度分布。通过数学推导了TIR在热场中的扩束规律,并给出了定量计算。为了说明该规则的应用,通过理论计算设计了具有高反射效率的X结2 X 2 TIR开关。仿真表明,该结构具有较高的反射系数。反射损耗仅为-0.76 dB。仿真结果与理论计算吻合良好。

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