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Optical phase conjugation via SBS in magnetoactive semiconductors in the 10.6 micron regime

机译:通过SBS在10.6微米状态下通过SBS的光学相位缀合

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The authors' work deals with the analytical investigation of OPC-SBS in a Brillouin cell containing a semiconducting crystal, under a pump intensity dependent absorption regime. For a Brillouin cell of micron size, the waveguide structure has been replaced by a simple plane wave formalism. In order to examine critically the dependence of the reflectivity coefficient on the material parameters, the crystal has been considered to be n-type with doping concentration being an externally controllable parameter. A purely electromagnetic treatment has been followed where the crystal is assumed to behave like a semiconductor-plasma such that the dynamic behaviour of this medium can be explained by the hydrodynamic model. The third order optical susceptibility, responsible for the occurrence of OPC and known as the Brillouin susceptibility ( chi /sub B/), has been obtained by following the coupled mode approach.
机译:作者的工作涉及在泵强度依赖性吸收制度下含有半导体晶体的布里渊细胞中OPC-SBS的分析研究。对于微米尺寸的布里渊细胞,波导结构已被简单的平面波形形式主义所取代。为了批判性地检查反射率系数对材料参数的依赖性,晶体被认为是N型,其具有掺杂浓度为外部可控参数。已经遵循纯电磁处理,其中假设晶体类似于半导体等离子体,使得该介质的动态行为可以通过流体动力学模型来解释。通过沿耦合模式方法获得第三阶光学敏感性,负责opc的发生和称为布里渊敏感性(CHI / SUB B /)。

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