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Tunable ultraviolet dispersive-wave emission driven directly by 40-fs Ti:sapphire laser pulses in a hollow capillary fiber

作者:Tiandao Chen, Zhi Yuan Huang, Jinyu Pan, Donghan Liu, Yinuo Zhao, Wenbin He, Jiapeng Huang, Xin Jiang, Meng Pang, Yuxin Leng, Ruxin Li · 发表于:Optics Letters · 年份:2025 · DOI:10.1364/ol.553345 · 被引用次数:6 · 研究领域:Laser-Matter Interactions and Applications、Advanced Fiber Laser Technologies、Laser-Plasma Interactions and Diagnostics

We demonstrate that by using a 1-m-long gas-filled hollow capillary fiber (HCF) with a core diameter of 100 μm, tunable ultraviolet (UV) dispersive-wave (DW) pulses can be generated in a compact, single-stage setup driven directly by 40-fs Ti:sapphire laser pulses. By adjusting the gas type and pressure inside the HCF, the central wavelength of the UV DW can be continuously tuned from 185 nm to ∼450 nm. In the experiment, we found that for ∼320-450 nm DW generation, Raman-active gas filled in the HCF can efficiently suppress the pulse fission effect of the high-order soliton due to the Raman-induced pulse energy dissipation, leading to the high-quality DW generation at these wavelengths with smooth, single-peak spectra. These results provide some useful insights for designing compact, wavelength-tunable ultrafast UV light sources with microjoule-level pulse energies.