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Optimizing the performance of CPML optical target for light-scattering simulations

机译:优化CPML光学目标的光散射模拟性能

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An optical target constructed by modifying the convolutional perfectly matched layers (CPML) formulation is tested for applications in light-scattering simulations. The optical target is designed for finite-difference time-domain light-scattering simulations to eliminate and isolate impinging light. The performance of the optical target under different incident light and factors affecting the absorption efficiency is analyzed. Variations of the optical target geometry are tested for optimal absorption. Simulation results show that the absorption is most effective for normally impinging light; its absorption cross section can be effectively tuned by modifying the layers' conductivity profile. In scattering simulations, the performance of such absorbing medium can effectively absorb incident light from arbitrary directions within a light-scattering simulation. (C) 2015 Optical Society of America.
机译:通过修改卷积完美匹配层(CPML)构造构造的光学目标已测试了在光散射模拟中的应用。光学目标设计用于有限差分时域光散射仿真,以消除和隔离入射光。分析了光学目标在不同入射光下的性能以及影响吸收效率的因素。测试光学目标几何形状的变化以获得最佳吸收。仿真结果表明,该吸收对于正常入射的光最为有效。可以通过修改层的电导率轮廓来有效地调整其吸收截面。在散射模拟中,这种吸收介质的性能可以在光散射模拟中有效地吸收来自任意方向的入射光。 (C)2015年美国眼镜学会。

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