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Comparison of signals under top-hat and Gaussian beam excitations in surface thermal lens technique

机译:顶帽和高斯光束激发下的信号比较表面热透镜技术

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摘要

A theoretical model for the surface thermal lens (STL) signal with modulated top-hat and Gaussian beam excitations is developed. For an optical coating sample, distributions of the temperature and surface deformation in both transient and quasi-steady states are deduced, and the STL amplitudes, corresponding to the alternating current (AC) deformation and direct current (DC) deformation, respectively, are defined. Numerical simulations and comparison results for the temperature and deformation demonstrate that there exist large differences in radial distributions between the AC and DC cases especially in the high modulation frequency range. The pulsed or AC STL amplitude under the top-hat beam excitation is approximately two times of that under the Gaussian beam excitation at the optimum detection distance in the high frequency, and correspondingly, the DC STL amplitude in quasi-steady state with top-hat beam excitation is only ~1.1 times of that with Gaussian beam excitation at the optimum detection distance. Influences of the heating-beam radius and modulation frequency on the STL amplitudes are also presented and compared. The application of the STL technique to the deformation measurement of an optical component is discussed.
机译:开发了具有调制顶帽和高斯光束激发的表面热透镜(STL)信号的理论模型。对于光学涂覆样品,推导出瞬态和准稳态状态的温度和表面变形的分布,并且定义了对应于交流(AC)变形和直流(DC)变形的STL幅度。温度和变形的数值模拟和比较结果表明,AC和DC壳体之间的径向分布差异很大,特别是在高调制频率范围内。顶帽梁激励下的脉冲或AC STL幅度在高频检测距离下的高斯光束激励下大约两倍,并且相应地,具有顶帽的准稳态状态下的DC STL幅度光束激励在最佳检测距离下具有高斯光束激励的〜1.1倍。还提出并比较了加热束半径和调制频率对STL幅度的影响。讨论了STL技术在光学部件的变形测量​​中的应用。

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