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Deep-UV to Mid-IR Supercontinuum Generation driven by Mid-IR Ultrashort Pulses in a Gas-filled Hollow-core Fiber

机译:充气中空光纤中的中红外超短脉冲驱动产生的深紫外至中红外超连续谱

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摘要

Supercontinuum (SC) generation based on ultrashort pulse compression constitutes one of the most promising technologies towards ultra-wide bandwidth, high-brightness, and spatially coherent light sources for applications such as spectroscopy and microscopy. Here, multi-octave SC generation in a gas-filled hollow-core antiresonant fiber (HC-ARF) is reported spanning from 200 nm in the deep ultraviolet (DUV) to 4000 nm in the mid-infrared (mid-IR) having an output energy of 5 μJ. This was obtained by pumping at the center wavelength of the first anti-resonant transmission window (2460 nm) with ~100 fs pulses and an injected pulse energy of ~8 μJ. The mechanism behind the extreme spectral broadening relies upon intense soliton-plasma nonlinear dynamics which leads to efficient soliton self-compression and phase-matched dispersive wave (DW) emission in the DUV region. The strongest DW is observed at 275 nm which corresponds to the calculated phase-matching wavelength of the pump. Furthermore, the effect of changing the pump pulse energy and gas pressure on the nonlinear dynamics and their direct impact on SC generation was investigated. This work represents another step towards gas-filled fiber-based coherent sources, which is set to have a major impact on applications spanning from DUV to mid-IR.
机译:基于超短脉冲压缩的超连续谱(SC)生成是朝着超宽带宽,高亮度和空间相干光源发展的最有前途的技术之一,用于光谱学和显微技术。在此,据报道,在充气的空心抗谐振纤维(HC-ARF)中产生多倍频程SC的范围从深紫外(DUV)的200 nm到中红外(mid-IR)的4000 nm。输出能量为5μJ。这是通过在第一个反谐振传输窗口的中心波长(2460nm)处泵浦〜100μfs脉冲和注入约8μJ的脉冲能量而获得的。极端光谱展宽的机制依赖于强烈的孤子-等离子体非线性动力学,这导致DUV区域中有效的孤子自压缩和相匹配的色散波(DW)发射。在275 nm处观察到最强的DW,它对应于计算出的泵的相位匹配波长。此外,研究了改变泵浦脉冲能量和气压对非线性动力学的影响及其对SC生成的直接影响。这项工作代表了向充气的基于光纤的相干光源迈出的又一步,这将对从DUV到中红外的应用产生重大影响。

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