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Modeling the index of refraction of insulating solids with a modified Lorentz oscillator model

机译:用改进的Lorentz振荡器模型对绝缘固体的折射率建模

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摘要

A modification of the Lorentz oscillator model for optical constants is proposed in an effort to achieve better agreement with experimental data while keeping the calculation simple. Improvement in agreement between theoretical and experimental data obtained with a variable line shape (frequency-dependent damping constant) over a wide spectral range is demonstrated through modeling the index of refraction of Si3N4 (1-24 eV), SiO (0.15-25 eV) and amorphous and crystalline SiO2 (0.15-25 eV). Model parameters are estimated by acceptance-probability-controlled simulated annealing. Excellent agreement between the modified model and the experimental data is obtained for both real and imaginary parts of the index of refraction. (C) 1998 Optical Society of America. [References: 24]
机译:提出了一种针对光学常数的Lorentz振荡器模型的改进方案,旨在在保持计算简单的同时,与实验数据更好地达成一致。通过对Si3N4(1-24 eV),SiO(0.15-25 eV)的折射率进行建模,证明了在宽光谱范围内使用可变线形(与频率相关的阻尼常数)获得的理论数据与实验数据之间的一致性得到了改善以及非晶和结晶的SiO2(0.15-25 eV)。通过接受概率控制的模拟退火来估计模型参数。对于折射率的实部和虚部,修改后的模型与实验数据之间具有极好的一致性。 (C)1998年美国眼镜学会。 [参考:24]

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