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Modeling aspects for high precision absorption measurements

机译:高精度吸收测量的建模方面

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Collinear photothermal deflection spectroscopy (PDS) is a widely used method for the spatially resolved determination ofthe optical attenuation coefficient. In this work we rigorously model the signal contributions in PDS on semiconductorsbelow the band gap energy. The dependencies of the PDS signal on selected experimental parameters (pump beamintensity, crossing angle, chopper frequency and distance from the pump beam focus) are computed and compared withprevious calculation results that are based on simplified assumptions. We find that for high pump beam intensities andsample materials with high two photon absorption coefficients beside the mirage effect nonlinear absorption mechanismshave a strong impact on the signal. Furthermore, we show that angular deflection effects can significantly enhance the PDSsignal. For example, the conical refractive index field due to the pump beam divergence leads to an angular deflection atreadout points outside the pump beam focus. Considering these additional signal contributions is crucial to determineproper absorption properties.
机译:共线光热偏转光谱法(PDS)是一种广泛使用的空间分辨方法 光学衰减系数。在这项工作中,我们严格模拟了半导体中PDS中的信号贡献 低于带隙能量。 PDS信号对所选实验参数(泵浦光束)的依赖性 计算强度,交叉角,斩波频率和距泵浦光束焦点的距离),并与 基于简化假设的先前计算结果。我们发现对于高泵浦光束强度和 带有海市nonlinear楼效应非线性吸收机理的高两个光子吸收系数的样品材料 对信号有很大的影响。此外,我们表明角偏转效应可以显着增强PDS 信号。例如,由于泵浦光束发散所致的圆锥形折射率场导致在 泵浦光束焦点外的读数点。考虑这些额外的信号贡献对于确定 适当的吸收性能。

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