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Optimizing precision of rotating-analyzer and rotating-compensator ellipsometers

机译:优化旋转分析仪和旋转补偿椭圆仪的精度

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I investigate the dependence of shot-noise-limited uncertainties of the ellipsometric parameters ψ and Δ for the rotating-analyzer ellipsometer (RAE) and the rotating-compensator ellipsometer (RCE) of the polarizer-sample-compensator-analyzer type. The development is general and takes into account correlations among the Fourier coefficients of the transmitted intensity, in particular the average intensity, which is necessarily correlated with all other coefficients through normalization. The results are expressed in terms of the traditional uncertainties δψ and δΔ of the ellipsometric parameters ψ and Δ, respectively, although a more appropriate measure of uncertainty is the differential area 2δψ×sin ψδΔ on the unit-radius Poincare sphere. Numerical results for broadband operation from 1.5 to 6.0 eV with a Si sample show that the optimum measurement conditions for both configurations occur when the intensity of light reflected from the sample is approximately balanced between the TE and the TM modes, and, for the RCE, when the analyzer azimuth is essentially equal to that of the polarizer. Under typical broadband operating conditions in which components cannot be optimized on a wavelength-by-wavelength basis, the RCE is better at determining Δ, whereas the RAE is better at determining ψ. The approach is easily generalized to other configurations and other types of experimental uncertainty, both random and systematic.
机译:我研究了偏振分析仪-样品-补偿器-分析仪类型的旋转分析仪椭圆仪(RAE)和旋转补偿器椭圆仪(RCE)的椭圆仪参数ψ和Δ的散粒噪声限制不确定度的依赖性。这种发展是普遍的,并考虑了透射强度的傅立叶系数之间的相关性,特别是平均强度,其必须通过归一化与所有其他系数相关。结果分别用椭偏参数ψ和Δ的传统不确定度δψ和δΔ表示,尽管更合适的不确定度度量是单位半径Poincare球面上的微分面积2δψ×sinψδΔ。使用Si样品在1.5到6.0 eV的宽带工作条件下的数值结果表明,当TE和TM模式之间从样品反射的光强度大致平衡时,两种配置均会出现最佳测量条件,对于RCE,当检偏器的方位角基本上等于偏振器的方位角时。在无法基于逐个波长优化组件的典型宽带工作条件下,RCE可以更好地确定Δ,而RAE可以更好地确定ψ。该方法很容易推广到随机和系统性的其他配置和其他类型的实验不确定性。

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