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Two photon absorption effect on all-optical semiconductor based switching nonlinear directional coupler

机译:基于全光半导体的开关非线性定向耦合器的两个光子吸收效应

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As the semiconductor materials have strong nonlinear optical effects, they have a great deal of attention in ultrafast all-optical data processing. In semiconductors, the free carriers (FC) density change with field intensity in process of Two Photon Absorption (TPA), and leads to second order intensity dependant in refractive index and loss. In this paper, in addition to Kerr effect, the nonlinear optical effects (TPA) and free carriers is studied theoretically in nonlinear directional couplers by starting from Maxwell's equations and perturbation method. As results show that TPA and FC limit the field transmission between waveguides stronger than Kerr effect and the threshold of filed intensity decreases one order of magnitude. This phenomenon has important applications in switching operation when coupling and decoupling optical wave is needed.
机译:由于半导体材料具有很强的非线性光学效应,因此在超快速全光学数据处理中备受关注。在半导体中,自由载流子(FC)密度在两次光子吸收(TPA)过程中随场强而变化,并导致依赖于折射率和损耗的二阶强度。本文从麦克斯韦方程和摄动法出发,在理论上研究了非线性定向耦合器中除了克尔效应以外的非线性光学效应(TPA)和自由载流子。结果表明,TPA和FC限制了比Kerr效应更强的波导之间的场传输,并且场强阈值降低了一个数量级。当需要耦合和去耦光波时,这种现象在开关操作中具有重要的应用。

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