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Two-photon microscopy using picosecond pulses from four-wave mixing in a Yb-doped photonic crystal fiber

Two-photon microscopy using picosecond pulses from four-wave mixing in a Yb-doped photonic crystal fiber

来源:Arxiv_logoArxiv
英文摘要

Two-photon microscopy (TPM) enables deep tissue imaging but requires excitation pulses that have a large product of average and peak power, typically supplied by femtosecond solid-state lasers. However, these lasers are bulky and femtosecond pulses require careful dispersion management to avoid pulse broadening, particularly when delivery fibers are used. Here we present a compact, fiber-based picosecond laser source operating at 790 nm for TPM using a ytterbium-doped photonic crystal fiber (Yb-doped PCF). The Yb-doped PCF simultaneously amplifies 1064 nm input pulses and efficiently converts them to 790 nm via four-wave mixing, generating pulses with a peak power of up to ~3.8 kW. The source has a variable repetition rate (1.48 MHz-14.78 MHz), enabling the two-photon excitation fluorescence signal to be maximized in the presence of excitation saturation. We benchmark our picosecond laser source against a femtosecond Ti:Sapphire laser for TPM of stained Convallaria majalis samples and demonstrate comparable fluorescence signal when the two-photon excitation conditions are matched.

B. Krawczyk、A. Kudlinski、R. T. Murray、S. R. Schultz、A. J. Foust、T. H. Runcorn

Department of Physics, Imperial College LondonUniversité de Lille, Laboratoire de physique des Lasers Atomes et MoléculesDepartment of Physics, Imperial College LondonDepartment of Bioengineering, Imperial College LondonDepartment of Bioengineering, Imperial College LondonDepartment of Physics, Imperial College London

光电子技术

B. Krawczyk,A. Kudlinski,R. T. Murray,S. R. Schultz,A. J. Foust,T. H. Runcorn.Two-photon microscopy using picosecond pulses from four-wave mixing in a Yb-doped photonic crystal fiber[EB/OL].(2025-04-02)[2025-05-05].https://arxiv.org/abs/2504.01621.点此复制

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