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Two-photon bioimaging with a multi-kilowatt peak-power optical pulse source using a 1-祄 wavelength mode-locked semiconductor laser

机译:使用1-祄波长模式锁定半导体激光器的二千瓦峰值功率光学脉冲源的双光子生物分析

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We have developed a multi-kilowatt peak power 1-um optical pulse source for two-photon microscopy. Utilizing an external-cavity hybrid mode-locked semiconductor laser, we were able to generate picosecond optical pulses at a 500-MHz repetition rate. With a semiconductor optical amplifier driven by synchronized electronic gating pulses, the optical pulse repetition rate was sub-harmonically extracted at 1-100 MHz. At a 10-MHz repetition rate, optical pulses were then amplified to a peak power of greater than 2 kW with a two-stage Yb-doped fiber amplifier. Using this light source, we successfully obtained clear two-photon images of mouse brain neurons expressing green fluorescent proteins.
机译:我们开发了一种用于双光子显微镜的多千瓦峰值功率1-UM光脉冲源。利用外腔混合模式锁定的半导体激光器,我们能够以500 MHz的重复率生成皮秒光脉冲。利用由同步电子栅脉冲驱动的半导体光学放大器,光脉冲重复率在1-100MHz下亚谐谐速率提取。在10-MHz的重复速率下,用两级YB掺杂的光纤放大器将光学脉冲放大到大于2kW的峰值功率。使用这种光源,我们成功获得了表达绿色荧光蛋白的小鼠脑神经元的澄清二光子图像。

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