论文标题
使用多模纤维的高分辨率非线性荧光成像的时空梁自我清洁
Spatiotemporal beam self-cleaning for high-resolution nonlinear fluorescence imaging with multimode fibres
论文作者
论文摘要
不同研究组最近报道了分级索引(Grin)多模纤维(MMF)中的梁自我清洁(BSC)。 BSC在Kerr效应和梁自我成像之间的相互作用驱动,BSC抵消随机模式耦合,并迫使激光束在笑容纤维的输出下恢复准单个模式曲线。在这里,我们表明,相关的自我诱导的时空重塑允许使用多模光纤改善非线性荧光显微镜和内窥镜检查的性能。我们在实验上证明,梁亮度的增加,是由自我清洁引起的,可以实现具有高空间分辨率的生物样品的两个和三光子成像。伴随空间束清洁的时间脉冲缩短可增强输出峰值功率,因此非线性成像的效率。我们还表明,时空超脑产生非常适合可见和红外域中的大带非线性荧光成像。我们通过显微镜和内窥镜构型中的多光子荧光成像证实了我们的发现。
Beam self-cleaning (BSC) in graded-index (GRIN) multimode fibres (MMFs) has been recently reported by different research groups. Driven by the interplay between Kerr effect and beam self-imaging, BSC counteracts random mode coupling, and forces laser beams to recover a quasi-single mode profile at the output of GRIN fibres. Here we show that the associated self-induced spatiotemporal reshaping allows for improving the performances of nonlinear fluorescence microscopy and endoscopy using multimode optical fibres. We experimentally demonstrate that the beam brightness increase, induced by self-cleaning, enables two and three-photon imaging of biological samples with high spatial resolution. Temporal pulse shortening accompanying spatial beam clean-up enhances the output peak power, hence the efficiency of nonlinear imaging. We also show that spatiotemporal supercontinuum generation is well-suited for large-band nonlinear fluorescence imaging in visible and infrared domains. We substantiated our findings by multiphoton fluorescence imaging in both microscopy and endoscopy configurations.