首页> 外文期刊>IEEE journal of selected topics in quantum electronics: A publication of the IEEE Lasers and Electro-optics Society >10.5 W Time-Averaged Power Mid-IR Supercontinuum Generation Extending Beyond 4 formula formulatype='inline'tex Notation='TeX'$mu$/tex/formulam With Direct Pulse Pattern Modulation
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10.5 W Time-Averaged Power Mid-IR Supercontinuum Generation Extending Beyond 4 formula formulatype='inline'tex Notation='TeX'$mu$/tex/formulam With Direct Pulse Pattern Modulation

机译:10.5 W 时间平均功率中红外超连续谱生成,可扩展超过 4 个公式 formulatype=“inline”tex notation=“TeX”$mu$/tex/formulam,具有直接脉冲模式调制

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摘要

A novel, all-fiber-integrated supercontinuum (SC) laser is demonstrated and provides up to 10.5 W time-averaged power with a continuous spectrum from ~0.8 to 4 mum. The SC is generated in a combination of standard single-mode fibers and ZrF4-BaF2-LaF3-AlF3-NaF (ZBLAN) fluoride fibers pumped by a laser-diode-based cladding-pumped fiber amplifier system. The output SC pulse pattern can be modulated by directly modulating the seed laser diode. Near-diffraction-limited beam qualities are maintained over the entire SC spectrum. The SC average power is also linearly scalable by varying the input pump power and pulse repetition rate. We further investigate the theoretical limitations on the achievable average power handling and spectral width for the SC generation in ZBLAN fibers. Based on the thermal modeling, the standard ZBLAN fiber can handle a time-averaged power up to ~15 W, which can be further scaled up to ~40 W with a proper thermal coating applied onto the ZBLAN fiber. The SC long-wavelength edge is limited by the nonlinear wavelength generation processes, fiber bend-induced loss, and glass material loss. By using a ZBLAN fiber with a 0.3 numerical aperture, the SC spectrum could extend out to ~4.5 mum, which is then limited by the material loss.
机译:展示了一种新型的全光纤集成超连续 (SC) 激光器,可提供高达 10.5 W 的时间平均功率,连续光谱范围为 ~0.8 至 4 mum。SC由标准单模光纤和ZrF4-BaF2-LaF3-AlF3-NaF (ZBLAN)氟化物光纤组合产生,这些光纤由基于激光二极管的包层泵浦光纤放大器系统泵浦。输出SC脉冲方向图可以通过直接调制种子半导体激光管来调制。在整个 SC 光谱上保持近乎衍射极限的光束质量。SC平均功率也可以通过改变输入泵浦功率和脉冲重复率来线性扩展。我们进一步研究了ZBLAN光纤中SC生成可实现的平均功率处理能力和频谱宽度的理论局限性。根据热建模,标准 ZBLAN 光纤可以处理高达 ~15 W 的时间平均功率,通过在 ZBLAN 光纤上涂上适当的热涂层,可以进一步扩展到 ~40 W。SC长波长边缘受到非线性波长产生过程、光纤弯曲引起的损耗和玻璃材料损耗的限制。通过使用具有 0.3 数值孔径的 ZBLAN 光纤,SC 光谱可以扩展到 ~4.5 mum,然后受到材料损耗的限制。

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