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Versatile photonic crystal fiber-enabled source for multi-modality biophotonic imaging beyond conventional multiphoton microscopy

机译:多功能光子晶体光纤源,用于超越传统多光子显微镜的多模态生物光子成像

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摘要

In a typical multiphoton microscope, the majority of the laser power from the near-IR pulsed source is thrown away in order to prevent photo-damage on biological samples. It is thus desirable to convert this wasted power into other wavelengths through nonlinear fiber optics to accommodate imaging modalities beyond conventional multiphoton microscopy. Here we present a prototypical source that accommodates the requirements for laser scanning confocal microscopy, fluorescence lifetime imaging microscopy, stimulated emission microscopy, coherent anti-Stokes Raman microscopy/spectroscopy, transient absorption microscopy, and optical coherence tomography/microscopy. Such versatile source consists of dispersion-engineered photonic crystal fibers simultaneously pumped by a compact -1040 nm ultrafast ytterbium laser.
机译:在典型的多光子显微镜中,来自近红外脉冲源的大部分激光功率被丢弃,以防止对生物样品造成光损坏。因此,希望通过非线性光纤将该浪费的功率转换成其他波长,以适应常规多光子显微镜之外的成像方式。在这里,我们提出了一种原型光源,可满足激光扫描共聚焦显微镜,荧光寿命成像显微镜,受激发射显微镜,相干抗斯托克斯拉曼显微镜/光谱,瞬态吸收显微镜和光学相干层析/显微镜的要求。这种通用的光源由分散工程化的光子晶体光纤组成,这些光纤同时由紧凑的-1040 nm超快fast激光器泵浦。

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