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Raman microspectroscopy of optically trapped micro- and nanoobjects

机译:光学捕获的微米和纳米物体的拉曼光谱

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We describe and characterize an experimental system for Raman microspectroscopy of micro- and nanoobjects optically trapped in aqueous suspensions with the use of a single-beam gradient optical trap (Raman tweezers). This system features two separate lasers providing light for the optical trapping and excitation of the Raman scattering spectra from the trapped specimen, respectively. Using independent laser beams for trapping and spectroscopy enables optimizing the parameters of both beams for their respective purposes. Moreover, it is possible to modulate the position of the trapped object relative to the Raman beam focus for maximizing the detected Raman signal and obtaining spatially resolved images of the trapped specimen. Using this experimental system, we have obtained Raman scattering spectra of individual optically confined micron and sub-micron sized polystyrene beads and baker's yeast cells. Sufficiently high signal-to-noise ratio of the spectra could be achieved using a few tens of milliwatts of the Raman beam power and detector integration times on the order of seconds.
机译:我们描述和表征了使用单光束梯度光阱(拉曼镊子)在水悬浮液中光学捕获的微和纳米物体的拉曼显微光谱的实验系统。该系统具有两个独立的激光器,分别为捕获的样品提供光学捕获和激发拉曼散射光谱的光。使用独立的激光束进行陷波和光谱分析可以优化两个光束的参数,以达到各自的目的。此外,可以调制被捕获物体相对于拉曼光束焦点的位置,以最大化检测到的拉曼信号并获得被捕获标本的空间分辨图像。使用该实验系统,我们获得了单个光学限制的微米和亚微米尺寸的聚苯乙烯珠和面包酵母细胞的拉曼散射光谱。使用几十毫瓦的拉曼光束功率和几秒钟的检测器积分时间,可以实现足够高的光谱信噪比。

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