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通过使用光学成像技术记录的受激拉曼散射信号。

Stimulated Raman scattering signals recorded by the use of an optical imaging technique.

作者信息

Amer Eynas, Gren Per, Sjödahl Mikael

出版信息

Appl Opt. 2015 Jul 10;54(20):6377-85. doi: 10.1364/AO.54.006377.

Abstract

In this paper, stimulated Raman scattering (SRS) signals have been recorded by an optical imaging technique that is based on spatial modulation. A frequency doubled Q-switched Nd:YAG laser (532 nm) was used to pump a polymethyl methacrylate (PMMA) target. The frequency tripled (355 nm) beam from the same laser was used to pump an optical parametric oscillator (OPO). The Stokes beam (from the OPO) was tuned to 631.27 nm so that the frequency difference between the pump and the Stokes beams fit the Raman active vibrational mode of the PMMA molecule (2956  cm(-1)). The pump beam has been spatially modulated with fringes produced in a Michelson interferometer. The pump and the Stokes beams were overlapped on the target resulting in a gain of the Stokes beam of roughly 2.5% and a corresponding loss of the pump beam through the SRS process. To demodulate the SRS signal, two images of the Stokes beam without and with the pump beam fringes present were recorded. The difference between these two images was calculated and Fourier transformed. Then, the gain of the Stokes beam was separated from the background in the Fourier domain. The results show that spatial modulation of the pump beam is a promising method to separate the weak SRS signal from the background.

摘要

在本文中,受激拉曼散射(SRS)信号通过一种基于空间调制的光学成像技术进行记录。使用一台倍频调Q Nd:YAG激光器(532纳米)泵浦聚甲基丙烯酸甲酯(PMMA)靶。来自同一激光器的三倍频(355纳米)光束用于泵浦光学参量振荡器(OPO)。将来自OPO的斯托克斯光束调谐到631.27纳米,使得泵浦光束与斯托克斯光束之间的频率差符合PMMA分子的拉曼活性振动模式(2956 cm⁻¹)。泵浦光束通过迈克尔逊干涉仪产生的条纹进行空间调制。泵浦光束与斯托克斯光束在靶上重叠,通过SRS过程使得斯托克斯光束增益约为2.5%,同时泵浦光束相应损失。为了解调SRS信号,记录了有无泵浦光束条纹时斯托克斯光束的两幅图像。计算这两幅图像的差值并进行傅里叶变换。然后,在傅里叶域中将斯托克斯光束的增益与背景分离。结果表明,泵浦光束的空间调制是一种从背景中分离微弱SRS信号的有前景的方法。

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