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基于全光纤锁模激光器的 890nm 激发的二次谐波产生和荧光成像。

890-nm-excited SHG and fluorescence imaging enabled by an all-fiber mode-locked laser.

出版信息

Opt Lett. 2022 Jun 1;47(11):2710-2713. doi: 10.1364/OL.455081.

Abstract

We demonstrate second-harmonic generation (SHG) microscopy excited by the ∼890-nm light frequency-doubled from a 137-fs, 19.4-MHz, and 300-mW all-fiber mode-locked laser centered at 1780 nm. The mode-locking at the 1.7-µm window is realized by controlling the emission peak of the gain fiber, and uses the dispersion management technique to broaden the optical spectrum up to 30 nm. The spectrum is maintained during the amplification and the pulse is compressed by single-mode fibers. The SHG imaging performance is showcased on a mouse skull, leg, and tail. Two-photon fluorescence imaging is also demonstrated on C. elegans labeled with green and red fluorescent proteins. The frequency-doubled all-fiber laser system provides a compact and efficient tool for SHG and fluorescence microscopy.

摘要

我们展示了由中心波长为 1780nm 的 137fs、19.4MHz 和 300mW 的全光纤锁模激光器倍频得到的~890nm 光激发的二次谐波(SHG)显微镜。通过控制增益光纤的发射峰,在 1.7μm 窗口实现锁模,并采用色散管理技术将光谱展宽至 30nm。在放大过程中保持光谱,通过单模光纤压缩脉冲。在小鼠头骨、腿和尾巴上展示了 SHG 成像性能。还对用绿色和红色荧光蛋白标记的秀丽隐杆线虫进行了双光子荧光成像。倍频全光纤激光系统为 SHG 和荧光显微镜提供了一种紧凑且高效的工具。

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