Optimum diameter for laser beam and effect of temperature rise on the optical bistability hysteresis loops

A. H. Khidhir
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Abstract

 In this research, analytical study for simulating a Fabry-Perot bistable etalon (F-P cavity) filled with a dispersive optimized nonlinear optical material (Kerr type) such as semiconductors Indium Antimonide (InSb). An optimization procedure using reflective (~85%) InSb etalon (~50µm) thick is described. For this etalon with a (50 µm) spot diameter beam, the minimum switching power is (~0.078 mW) and switching time is (~150 ns), leading to a switching energy of (~11.77 pJ) for this device. Also, the main role played by the temperature to change the etalon characteristic from nonlinear to linear dynamics.
激光光束的最佳直径及温升对光双稳磁滞回线的影响
在本研究中,分析研究模拟了一个充满色散优化非线性光学材料(Kerr型)如半导体锑化铟(InSb)的Fabry-Perot双稳标准子(F-P腔)。描述了一种使用反射(~85%)InSb标准子(~50µm)厚度的优化程序。对于光斑直径为(50µm)的标准子,最小开关功率为(~0.078 mW),开关时间为(~150 ns),该器件的开关能量为(~11.77 pJ)。同时,温度对非线性动力学向线性动力学转变起着重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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