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优化全光纤镱啁啾脉冲放大器中的脉冲可压缩性,用于体内双光子激光扫描显微镜。

Optimizing pulse compressibility in completely all-fibered Ytterbium chirped pulse amplifiers for in vivo two photon laser scanning microscopy.

作者信息

Fernández A, Grüner-Nielsen L, Andreana M, Stadler M, Kirchberger S, Sturtzel C, Distel M, Zhu L, Kautek W, Leitgeb R, Baltuska A, Jespersen K, Verhoef A

机构信息

Photonics Institute, TU Wien, Gusshausstrasse 27-29/387, 1040 Vienna, Austria.

Center for Medical Physics and Biomedical Engineering, Medizinische Universität Wien, Währinger Gürtel 18-20/4L, 1090 Vienna, Austria.

出版信息

Biomed Opt Express. 2017 Jul 3;8(8):3526-3537. doi: 10.1364/BOE.8.003526. eCollection 2017 Aug 1.

Abstract

A simple and completely all-fiber Yb chirped pulse amplifier that uses a dispersion matched fiber stretcher and a spliced-on hollow core photonic bandgap fiber compressor is applied in nonlinear optical microscopy. This stretching-compression approach improves compressibility and helps to maximize the fluorescence signal in two-photon laser scanning microscopy as compared with approaches that use standard single mode fibers as stretcher. We also show that in femtosecond all-fiber systems, compensation of higher order dispersion terms is relevant even for pulses with relatively narrow bandwidths for applications relying on nonlinear optical effects. The completely all-fiber system was applied to image green fluorescent beads, a stained lily-of-the-valley root and rat-tail tendon. We also demonstrated imaging in zebrafish larvae, where we simultaneously measure second harmonic and fluorescence from two-photon excited red-fluorescent protein. Since the pulses are compressed in a fiber, this source is especially suited for upgrading existing laser scanning (confocal) microscopes with multiphoton imaging capabilities in space restricted settings or for incorporation in endoscope-based microscopy.

摘要

一种简单且完全全光纤的镱啁啾脉冲放大器,其使用色散匹配光纤拉伸器和熔接的空心光子带隙光纤压缩器,应用于非线性光学显微镜。与使用标准单模光纤作为拉伸器的方法相比,这种拉伸 - 压缩方法提高了可压缩性,并有助于在双光子激光扫描显微镜中最大化荧光信号。我们还表明,在飞秒全光纤系统中,对于依赖非线性光学效应的应用,即使对于带宽相对较窄的脉冲,高阶色散项的补偿也是相关的。该完全全光纤系统被应用于对绿色荧光珠、染色的铃兰根和大鼠尾肌腱进行成像。我们还展示了在斑马鱼幼虫中的成像,在那里我们同时测量来自双光子激发的红色荧光蛋白的二次谐波和荧光。由于脉冲在光纤中被压缩,该光源特别适合在空间受限的环境中升级现有的具有多光子成像能力的激光扫描(共聚焦)显微镜,或用于基于内窥镜的显微镜检查。

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Measurements of multiphoton action cross sections for multiphoton microscopy.多光子显微镜的多光子作用截面测量
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