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基于累积光热效应和瑞利干涉仪的飞秒双光子吸收测量。

Femtosecond two-photon absorption measurements based on the accumulative photo-thermal effect and the Rayleigh interferometer.

作者信息

Rodriguez Luis, Ahn Hyo-Yang, Belfield Kevin D

机构信息

Department of Chemistry, The College of Optics and Photonics, University of Central Florida, PO Box 162366, Orlando, Florida 32816-2366, USA.

出版信息

Opt Express. 2009 Oct 26;17(22):19617-28. doi: 10.1364/OE.17.019617.

Abstract

A rapid, straightforward method for measuring the two-photon absorption cross sections in liquid samples based on both the accumulative photo-thermal effect and the Rayleigh interferometery is described and demonstrated. This technique combines the sensitivity of the thermal lens approach and the accuracy of interferometry techniques. Focusing a high repetition rate laser beam in the sample, generating a localized change in its refractive index, induces the photo-thermal phase shift. By recording and processing two interference patterns, this technique allows the rapid estimation of the two-photon absorption cross section of the sample. Significantly, the experimental results demonstrate that this new method can be used with both fluorescent and non-fluorescent samples.

摘要

本文描述并展示了一种基于累积光热效应和瑞利干涉测量法来测量液体样品中双光子吸收截面的快速、直接的方法。该技术结合了热透镜方法的灵敏度和干涉测量技术的准确性。将高重复率激光束聚焦在样品中,使其折射率产生局部变化,从而引起光热相移。通过记录和处理两种干涉图样,该技术能够快速估算样品的双光子吸收截面。值得注意的是,实验结果表明这种新方法可用于荧光和非荧光样品。

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