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基于Z扫描法并使用高斯光束对整个热透镜过程进行数值模拟

Numerical Simulation of the Whole Thermal Lensing Process with Z-Scan-Based Methods Using Gaussian Beams.

作者信息

Boudebs Georges

机构信息

Univ Angers, LPHIA, SFR MATRIX, F-49000 Angers, France.

出版信息

Materials (Basel). 2021 Sep 24;14(19):5533. doi: 10.3390/ma14195533.

Abstract

A general study of the diffracted far field due to thermal lens heating using Gaussian beams is presented. The numerical simulation considers the whole system, including both the optical and the thermal parameters. It is shown that the existing simplified relations found in the literature and used up to now only give the order of magnitude of the thermo-optical coefficients. More accurate, simplified formulas are derived to measure the induced thermal phase shift when working with Z-scan-based methods. Temperature estimation in absorbing media turn out to be more reliable whether using time-resolved or steady-state techniques. The extension of the calculation to the image formation in a 4f system is also addressed.

摘要

本文对使用高斯光束的热透镜加热所产生的衍射远场进行了一般性研究。数值模拟考虑了整个系统,包括光学参数和热学参数。结果表明,文献中现有的简化关系以及至今所使用的这些关系仅给出了热光系数的量级。推导了更精确的简化公式,用于在基于Z扫描的方法中测量感应热相移。无论是使用时间分辨技术还是稳态技术,吸收介质中的温度估计都变得更加可靠。还讨论了将计算扩展到4f系统中的成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8da/8509296/1a92b3dd171b/materials-14-05533-g001.jpg

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