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Impact of nonlinear loss on stimulated Brillouin scattering

机译:非线性损失对受激布里渊散射的影响

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We study the impact of two-photon absorption (2PA) and fifth-order nonlinear loss such as 2PA-induced free-carrier absorption in semiconductors on the performance of stimulated Brillouin scattering devices. We formulate the equations of motion including effective loss coefficients, whose explicit expressions are provided for numerical evaluation in any waveguide geometry. We find that 2PA results in a monotonic, algebraic relationship between amplification, waveguide length, and pump power, whereas fifth-order losses lead to a nonmonotonic relationship. We define a figure of merit for materials and waveguide designs in the presence of fifth-order losses. From this, we determine the optimal waveguide length for the case of 2PA alone and upper bounds for the total Stokes amplification for the case of 2PA as well as fifth-order losses. The analysis is performed analytically using a small-signal approximation and is compared to numerical solutions of the full nonlinear modal equations. (C) 2015 Optical Society of America
机译:我们研究了两光子吸收(2PA)和五阶非线性损耗(如2PA诱导的半导体中的自由载流子吸收)对受激布里渊散射器件性能的影响。我们制定了包括有效损耗系数的运动方程,为在任何波导几何结构中进行数值评估提供了明确的表达式。我们发现2PA导致放大,波导长度和泵浦功率之间为单调的代数关系,而五阶损耗导致非单调的关系。我们定义了存在五阶损耗时材料和波导设计的品质因数。据此,我们确定了仅2PA情况下的最佳波导长度,以及2PA情况下总Stokes放大的上限以及5阶损耗。该分析使用小信号逼近进行分析,并与完整非线性模态方程的数值解进行比较。 (C)2015年美国眼镜学会

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