Chou Lu-Ting, Liu Yu-Cheng, Zhong Dong-Lin, Lin Wei-Zhong, Hung Hao-Hsuan, Chan Chao-Jin, Chen Zi-Ping, Chia Shih-Hsuan
Institute of Biophotonics, National Yang-Ming University, No. 155, Sec. 2, Linong Street, Taipei 11221, Taiwan.
Institute of Biophotonics, National Yang Ming Chiao Tung University, No. 155, Sec. 2, Linong Street, Taipei 11221, Taiwan.
Biomed Opt Express. 2021 Apr 23;12(5):2888-2901. doi: 10.1364/BOE.422668. eCollection 2021 May 1.
We have demonstrated widely tunable Yb:fiber-based laser sources, aiming to replace Ti:sapphire lasers for the nJ-level ultrafast applications, especially for the uses of nonlinear light microscopy. We investigated the influence of different input parameters to obtain an expansive spectral broadening, enabled by self-phase modulation and further reshaped by self-steepening, in the normal dispersion regime before the fiber damage. We also discussed the compressibility and intensity fluctuations of the demonstrated pulses, to reach the transform-limited duration with a very low intensity noise. Most importantly, we have demonstrated clear two-photon fluorescence images from UV-absorbing fluorophores to deep red dye stains.
我们已经展示了基于镱光纤的广泛可调谐激光源,旨在取代钛宝石激光器用于纳焦耳级超快应用,特别是用于非线性光学显微镜。我们研究了不同输入参数的影响,以在光纤损伤前的正常色散区域获得由自相位调制实现的宽光谱展宽,并通过自陡峭进一步整形。我们还讨论了所展示脉冲的可压缩性和强度波动,以达到具有极低强度噪声的变换极限持续时间。最重要的是,我们已经展示了从紫外吸收荧光团到深红色染料污渍的清晰双光子荧光图像。