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Synchronization-free all-solid-state laser system for stimulated Raman scattering microscopy

机译:无同步全固态激光系统,用于受激拉曼散射显微镜

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摘要

We introduce an extremely simple and highly stable system for stimulated Raman scattering (SRS) microscopy. An 8-W, 450-fs Yb:KGW bulk oscillator with 41 MHz repetition rate pumps an optical parametric amplifier, which is seeded by a cw tunable external cavity diode laser. The output radiation is frequency doubled in a long PPLN crystal and generates 1.5-ps long narrowband pump pulses that are tunable between 760 and 820 nm with >50 mW average power. Part of the oscillator output is sent through an etalon and creates Stokes pulses with 100 mW average power and 1.7 ps duration. We demonstrate SRS microscopy at a 30-μs pixel dwell time with high chemical contrast, signal-to-noise ratio in excess of 45 and no need for balanced detection, thanks to the favorable noise properties of the bulk solid-state system. Cw seeding intrinsically ensures low spectral drift. We discuss its application to chemical contrast microscopy of freshly prepared plant tissue sections at different vibrational bands.
机译:我们介绍了一种非常简单且高度稳定的刺激拉曼散射(SRS)显微镜系统。具有41 MHz重复频率的8W 450-fs Yb:KGW体振荡器泵浦了一个光学参量放大器,该参量由cw可调外腔二极管激光器注入。在长PPLN晶体中,输出辐射的频率增加了一倍,并产生1.5ps长的窄带泵浦脉冲,该脉冲可在760至820 nm之间可调,平均功率> 50 mW。振荡器输出的一部分通过标准具发送,并产生平均功率为100 mW,持续时间为1.7 ps的斯托克斯脉冲。我们证明了SRS显微镜在30μs的像素停留时间内具有高的化学对比度,信噪比超过45且无需平衡检测,这归功于整体固态系统的良好噪声特性。 Cw种子本质上确保了低光谱漂移。我们讨论了其在不同振动带上新鲜制备的植物组织切片的化学对比显微镜中的应用。

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