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Photodeflection signal formation in photothermal measurements: comparison of the complex ray theory, the ray theory, the wave theory, and experimental results

机译:光热测量中的光偏转信号形成:复射线理论,射线理论,波动理论和实验结果的比较

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摘要

A comparison is made of three methods for modeling the interaction of a laser probe beam with the temperature field of a thermal wave. The three methods include: (1) a new method based on complex ray theory, which allows us to take into account the disturbance of the amplitude and phase of the electric field of the probe beam, (2) the ray deflection averaging theory of Aamodt and Murphy, and (3) the wave theory (WT) of Glazov and Muratikov. To carry out this comparison, it is necessary to reformulate the description of the photodeflection signal in either the WT or the ray deflection averaging theory. It is shown that the differences between calculated signals using the different theories are most pronounced when the radius of the probe beam is comparable with the length of the thermal wave in the region of their interaction. Predictions of the theories are compared with experimental results. A few parameters of the experimental setup are determined through multiparameter fitting of the theoretical curves to the experimental data. A least-squares procedure was chosen as a fitting method. The conclusion is that the calculation of the photodeflection signal in the framework of the complex ray theory is a more accurate approach than the ray deflection averaging theory or the wave one.
机译:比较了三种建模激光探针束与热波温度场相互作用的方法。这三种方法包括:(1)一种基于复杂射线理论的新方法,它使我们能够考虑探测光束电场的振幅和相位的干扰;(2)Aamodt的射线偏转平均理论(3)格拉佐夫和穆拉蒂科夫的波动理论。为了进行这种比较,有必要在WT或射线偏转平均理论中重新描述光偏转信号的描述。结果表明,当探测光束的半径与它们相互作用区域内的热波长度相当时,使用不同理论的计算信号之间的差异最为明显。将理论的预测与实验结果进行比较。通过将理论曲线与实验数据进行多参数拟合来确定实验设置的一些参数。选择最小二乘法作为拟合方法。结论是,在复射线理论框架内计算光偏转信号是一种比射线偏转平均理论或波动理论更准确的方法。

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