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Optical Gaussian beam interaction with one-dimensional thermal wave in the Raman-Nath configuration

机译:高斯光束与拉曼-纳特构型中的一维热波相互作用

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摘要

Optical Gaussian beam interaction with a one-dimensional temperature field in the form of a thermal wave in the Raman-Nath configuration is analyzed. For the description of the Gaussian beam propagation through the nonstationary temperature field the complex geometric optics method was used. The influence of the refractive coefficient modulation by thermal wave on the complex ray phase, path, and amplitude was taken into account. It was assumed that for detection of the modulated Gaussian beam parameters two types of detector can be used: quadrant photodiodes or centroidal photodiodes. The influence of such parameters as the size and position of the Gaussian beam waist, the laser-screen (detector) distance, the thermal wave beam position and width, as well as thermal wave frequency and the distance between the probing optical beam axis and source of thermal waves on the so-called normal signal was taken into account.
机译:分析了高斯光束与拉曼-纳特(Raman-Nath)配置中的热波形式的一维温度场的相互作用。为了描述高斯光束通过非平稳温度场的传播,使用了复杂的几何光学方法。考虑了热波对折射率的调制对复射线相位,路径和幅度的影响。假设为了检测调制的高斯光束参数,可以使用两种类型的检测器:象限光电二极管或质心光电二极管。高斯光束腰围的大小和位置,激光屏(探测器)的距离,热波光束的位置和宽度,热波频率以及探测光束轴与光源之间的距离等参数的影响考虑了所谓的正常信号上热波的变化。

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