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Optimizing the Drude-Lorentz model for material permittivity: Method, program, and examples for gold, silver, and copper

机译:优化材料介电常数的Drude-Lorentz模型:金,银和铜的方法,程序和示例

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摘要

Approximating the frequency dispersion of the permittivity of materials with simple analytical functions is of fundamental importance for understanding and modeling the optical response of materials and resulting structures. In the generalized Drude-Lorentz model, the permittivity is described in the complex frequency plane by a number of simple poles having complex weights, which is a physically relevant and mathematically simple approach: By construction, it respects causality, represents physical resonances of the material, and can be implemented easily in numerical simulations. We report here an efficient method of optimizing the fit of measured data with the Drude-Lorentz model having an arbitrary number of poles. We show examples of such optimizations for gold, silver, and copper, for different frequency ranges and up to four pairs of Lorentz poles taken into account. We also provide a program implementing the method for general use.
机译:用简单的分析函数来近似材料介电常数的频率色散对于理解和建模材料及其最终结构的光学响应至关重要。在广义Drude-Lorentz模型中,介电常数是在复数频率平面中由多个具有复数权重的简单极点描述的,这是一种物理上相关且在数学上简单的方法:通过构造,它遵循因果关系,表示材料的物理共振。 ,并且可以轻松地在数值模拟中实现。我们在这里报告了一种有效的方法,可利用具有任意极数的Drude-Lorentz模型来优化测量数据的拟合度。我们显示了针对金,银和铜进行这种优化的示例,这些优化针对不同的频率范围,并考虑了多达四对洛伦兹极点。我们还提供了实现该方法用于一般用途的程序。

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