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Comparison of continuous wave versus picosecond SRS and the resonance SRS effect

机译:连续波与PICOSECOND SRS的比较和共振SRS效果

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摘要

Stimulated Raman scattering (SRS) is a powerful optical technique for probing the vibrational states of molecules in biological tissues and provides greater signal intensities than when using spontaneous Raman scattering. In this study, we examined the use of continuous wave (cw) and picosecond (ps) laser excitations to generate SRS signals in pure methanol, a carotene-methanol solution, acetone, and brain tissue samples. The cw-SRS system, which utilized two cw lasers, produced better signal-to-noise (S/N) than the conventional ps-SRS system, suggesting that the cw-SRS system is an efficient and cost-effective approach for studying SRS in complex systems like the brain. The cw-SRS approach will reduce the size of the SRS system, allowing for stimulated Raman gain/loss microscopy. In addition, we showed that there exists a resonance SRS (RSRS) effect from the carotene-methanol solution and brain tissue samples using cw laser excitations. The RSRS effect will further improve the signal-to-noise and may be utilized as an enhanced, label-free SRS microscopic tool for the study of biological tissues. (C) 2020 Optical Society of America
机译:刺激的拉曼散射(SRS)是一种强大的光学技术,用于探测生物组织中分子的振动状态,并提供比使用自发拉曼散射更大的信号强度。在这项研究中,我们研究了连续波(CW)和PICOSecond(PS)激发激发以产生纯甲醇,胡萝卜素 - 甲醇溶液,丙酮和脑组织样品的SRS信号。利用两个CW激光器的CW-SRS系统比传统的PS-SRS系统生产出更好的信号 - 噪声(S / N),表明CW-SRS系统是学习SRS的有效和经济有效的方法在大脑的复杂系统中。 CW-SRS方法将减小SRS系统的大小,从而允许受刺激的拉曼增益/损耗显微镜。此外,我们表明,使用CW激光激发,存在来自胡萝卜素 - 甲醇溶液和脑组织样品的共振SRS(RSRS)。 RSRS效应将进一步提高信号 - 噪声,并且可以用作用于生物组织的增强的无标记的SRS微观工具。 (c)2020美国光学学会

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    《Applied optics》 |2020年第3期|共6页
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