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Time-resolved thermal lens spectroscopy with a single-pulsed laser excitation beam: an analytical model for dual-beam mode-mismatched experiments

机译:具有单脉冲激光激发梁的时间分离的热镜头光谱:双束模式失配实验的分析模型

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Pulsed laser beam excitations are more commonly used in thermal lens spectroscopy (TLS) than continuous-wave (CW) ones, because CW excitations limit the measurement to linear absorption processes [J. Opt. A 5, 256 (2003)]. In this work, we present a new and full analytical model for a single-pulsed laser excitation dual-beam mode-mismatched TLS for low absorption solid-state and liquid samples. Our model has been based on a new solution of time-dependent heat equation for a finite-radius cylindrical sample exposed to a single-pulsed excitation laser beam. For low absorbent samples, unlike previous models, all aberration terms associated in the thermal lens were taken into account in Fresnel integration. Besides, the model provides a full analytical mathematical expression for the temperature rise, normalized signal intensity, and Z-scan photothermal lens signal. The model was confirmed with experimental data of distilled deionized water with excellent agreement. Therefore, the model allows us to extract thermo-optical properties of samples in an analytical and more accurate way. (C) 2017 Optical Society of America
机译:脉冲激光束激励比连续波(CW)更常用于热透镜光谱(TLS),因为CW激励将测量限制为线性吸收过程[J.选择。 A 5,256(2003)]。在这项工作中,我们为单脉冲激光激发双光束模式 - 不匹配的TL提供了一种新的和完整的分析模型,用于低吸收固态和液体样品。我们的模型基于新的时间依赖性热方程解决了用于暴露于单脉冲激光激光束的有限半径圆柱形样本的新的时间依赖性热方程。对于低吸收样品,与以前的模型不同,在菲涅耳积分中考虑了热镜片中相关的所有像差术语。此外,该模型为温度升高,归一化信号强度和Z扫描光热透镜信号提供全分析数学表达。该模型用蒸馏水的实验数据证实了蒸馏水,具有良好的一致性。因此,该模型允许我们以分析和更准确的方式提取样品的热光学性质。 (c)2017年光学学会

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