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特约评论:相干拉曼散射显微镜的一种新型同步源解决方案

Contributed Review: A new synchronized source solution for coherent Raman scattering microscopy.

作者信息

Wang Ke, Wang Yuxin, Liang Runfu, Wang Jiaqi, Qiu Ping

机构信息

Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China.

College of Physics and Energy, Shenzhen University, Shenzhen 518060, China.

出版信息

Rev Sci Instrum. 2016 Jul;87(7):071501. doi: 10.1063/1.4955474.

Abstract

Based on vibrational spectroscopy, coherent Raman Scattering (CRS) microscopy allows label-free imaging of biological and chemical samples with endogenous image contrast. Two-color, synchronized picosecond pulses are typically used for high spectral resolution imaging, which in turn constitutes a dramatic laser source challenge for CRS microscopy. Recently, synchronized time-lens source, inspired from ultrafast optical signal processing, has emerged as a promising laser source solution and has found application in various modalities of CRS microscopy. Time-lens is based on space-time analogy, which uses a "lens" in the time domain to compress long optical pulses or even continuous waves to ultrashort pulses, mimicking a lens in the space domain. Phase and intensity modulators driven with electrical signals are used in the time-lens source for picosecond pulse generation. As a result, the time-lens source is highly versatile and naturally compatible with modulation capabilities. More importantly, if the electrical signals used to drive the time-lens source are derived from other laser sources, such as mode-locked lasers, then synchronization between them can be realized, underlying the physics of a synchronized time-lens source. In this paper, we review recent progress on the basic principle, design of the synchronized time-lens source, and its applications to CRS microscopy of both biological and chemical samples.

摘要

基于振动光谱学,相干拉曼散射(CRS)显微镜能够对生物和化学样品进行无标记成像,并具有内源性图像对比度。通常使用双色同步皮秒脉冲进行高光谱分辨率成像,这反过来又给CRS显微镜带来了巨大的激光源挑战。最近,受超快光信号处理启发的同步时间透镜源已成为一种有前途的激光源解决方案,并已在CRS显微镜的各种模式中得到应用。时间透镜基于时空类比,它在时域中使用一个“透镜”将长光脉冲甚至连续波压缩为超短脉冲,类似于空间域中的透镜。在时间透镜源中,由电信号驱动的相位和强度调制器用于产生皮秒脉冲。因此,时间透镜源具有高度的通用性,并且自然地与调制能力兼容。更重要的是,如果用于驱动时间透镜源的电信号来自其他激光源,如锁模激光器,那么它们之间可以实现同步,这是同步时间透镜源的物理基础。在本文中,我们回顾了同步时间透镜源的基本原理、设计及其在生物和化学样品CRS显微镜中的应用方面的最新进展。

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