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Accurate sensitivity analysis of photonic devices exploiting the finite-difference time-domain cavity adjoint variable method

机译:利用时域有限差分腔伴随变量法精确分析光子器件

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摘要

For what is believed to be the first time, the central adjoint variable method (CAVM) is applied to the sensitivity analysis of photonic devices using the finite-difference time-domain (FDTD) technique. The FDTD-CAVM technique obtains accurate sensitivities of any desired response with respect to the different design parameters. Our technique requires only one extra FDTD simulation to extract the sensitivities with respect to all the design parameters regardless of their number. Cost-free sensitivities of the power reflectivity are also derived without any additional simulation. The results show a very good agreement between the CAVM sensitivities and those obtained using the expensive central finite difference approximation.
机译:第一次相信是使用有限差分时域(FDTD)技术将中央伴随变量方法(CAVM)应用于光子器件的灵敏度分析。 FDTD-CAVM技术可针对不同的设计参数获得任何所需响应的准确灵敏度。我们的技术只需要进行一次额外的FDTD仿真,即可提取关于所有设计参数的灵敏度,而无需考虑其数量。无需任何其他模拟即可得出功率反射率的无成本灵敏度。结果表明,在CAVM灵敏度和使用昂贵的中心有限差分近似获得的灵敏度之间有很好的一致性。

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