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Impact of nonlinear effects on transmission losses of hollow-core antiresonant negative curvature optical fiber

机译:非线性效应对空心芯反谐振负曲率光纤传输损耗的影响

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摘要

We investigate the impact of input pulse duration and peak power of a femtosecond laser on pulse broadening and propagation losses in selected hollow-core antiresonant fiber (HC-ARF). The mixed effects of strong self-phase modulation and relatively weak Raman scattering broaden the spectral width, which in turn causes a portion of the output spectrum to exceed the transmission band of the fiber, resulting in transmission losses. By designing and setting up a gas flow control system and a vacuum system, the nonlinear behavior of the fiber filled with different pressurized gases is investigated. The experimental results show that replacing the air molecules in the fiber core with argon can weaken pulse broadening and increase the transmittable peak power by 14 MW for a given 122 MW input, while a vacuum system can reduce the nonlinearity to a larger extent, therefore enhancing the transmission of HC-ARF by at least 26 MW. Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License.
机译:我们研究了Femtosecond激光的输入脉冲持续时间和峰值功率对选定的空心核心抗谐波纤维(HC-ARF)的脉冲扩展和传播损耗的影响。强自相调制和相对较弱的拉曼散射的混合效应拓宽光谱宽度,这又导致输出频谱的一部分超过光纤的传输带,从而导致传输损耗。通过设计和设置气体流量控制系统和真空系统,研究了填充有不同加压气体的纤维的非线性行为。实验结果表明,用氩气替换纤维芯中的空气分子可以削弱脉冲宽度,并且对于给定的122 MW输入,通过14 mW增加可传输峰值功率,而真空系统可以将非线性降低到更大程度上,因此增强HC-ARF的透射至少26兆瓦。光学社会根据创意公约归因于4.0许可的条款发布。

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    《Applied optics》 |2020年第16期|共9页
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