论文标题

空心核纤维中的Microjoule级中红外飞秒脉冲产生

Microjoule-level mid-infrared femtosecond pulse generation in hollow-core fibres

论文作者

Deng, Ang, Gavara, Trivikramarao, Hassan, Muhammad Rosdi Abu, Hasan, Md Imran, Chang, Wonkeun

论文摘要

我们展示了一种基于纤维的方法,该方法在3-4μM光谱区域中产生了中红外飞秒脉冲,并具有微焦距级单脉冲能量。这是在由两微米光源泵送的一块充满气体的抗抗氧抗空心芯纤维中实现的。在纤维的结构共振附近的色散的快速变化会在中红外产生一个相匹配点,从而介导频转换。我们以3.16μm波长为中心的脉冲脉冲产生,脉冲能量超过1μM,可达到高达9.4%的转化效率。辐射的波长仅由覆层元件的介电壁厚度确定,而产率则受其他实验参数的约束。这与空心核纤维的高功率处理能力相结合,可以通过增加泵的脉冲能量或泵的重复速率来为中红外的输出提供动力。该技术为建立全纤维的中红外超脑源提供了一种新的途径,该途径有望成为超高灵敏度分子光谱法的强大新工具。

We demonstrate a fibre-based approach that generates mid-infrared femtosecond pulses in the 3-4 μm spectral region with microjoule-level single pulse energy. This is realised in a piece of gas-filled antiresonant hollow-core fibre that is pumped by a two-micron light source. A rapid variation of the dispersion near a structural resonance of the fibre creates a phase-matching point in the mid-infrared, which mediates the frequency-down conversion. We generate femtosecond pulses centred at 3.16 μm wavelength with the pulse energy of more than 1 μJ, achieving the conversion efficiency as high as 9.4%. The wavelength of the radiation is determined solely by the dielectric wall thickness of the cladding elements, while the yield is subject to other experimental parameters. This, combined with high power-handling capability of hollow-core fibres, makes it possible to power scale the mid-infrared output by either increasing the pulse energy or repetition rate of the pump. The technique presents a new pathway to build an all-fibre-based mid-infrared supercontinuum source, which promises to be a powerful new tool for ultrahigh sensitivity molecular spectroscopy.

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