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首页> 外文期刊>Applied optics >Probe-beam diffraction in a pulsed top-hat beam thermal lens with a mode-mismatched configuration
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Probe-beam diffraction in a pulsed top-hat beam thermal lens with a mode-mismatched configuration

机译:具有模式不匹配配置的脉冲礼帽光束热透镜中的探头光束衍射

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摘要

The Fresnel diffraction integral is used directly to describe the thermal lens (TL) effect with a mode-mismatched collinear configuration. The TL amplitudes obtained with Gaussian, Airy, and top-hat beam excitations are computed and compared. Numerical results for beam geometries optimized for both near- and far-field detection schemes are presented, and the analytical results developed by Bialkowski and Chartier [Appl. Opt. 36, 6711 (1997)] for a Gaussian beam TL effect are summarized in simplified form. Both the numerical and the analytical results demonstrate that, under a beam geometry optimized for either near- or far-field detection, the Gaussian beam TL experiment has approximately the same maximum signal amplitude as does the photothermal-interference scheme. A comparison between the optimum near- and far-field detection beam geometries indicates that a practical mode-mismatched TL instrument should be based on the far-field detection geometry. The computation results further demonstrate that the optimum beam geometry and the TL amplitude depend largely on the excitation-beam profile. The top-hat beam TL experiment is appreximately twice as sensitive as the Gaussian beam Tn scheme.
机译:菲涅耳衍射积分直接用于描述模式不匹配的共线配置的热透镜(TL)效应。计算并比较通过高斯,艾里和礼帽式光束激发获得的TL振幅。提出了针对近场和远场检测方案进行了优化的射束几何形状的数值结果,以及由Bialkowski和Chartier [Appl。Chem。,1986,pp。选择。 36,6711(1997)]以简化的形式总结了高斯光束TL效应。数值和分析结果均表明,在针对近场或远场检测优化的光束几何结构下,高斯光束TL实验的最大信号幅度与光热干涉方案大致相同。最佳近场和远场检测光束的几何形状之间的比较表明,实际模式不匹配的TL仪器应基于远场检测几何形状。计算结果进一步表明,最佳的光束几何形状和TL幅度在很大程度上取决于激发光束轮廓。礼帽光束TL实验的灵敏度大约是高斯光束Tn方案的两倍。

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