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通过多模反谐振空芯光纤在1微米波长下传输纳秒激光脉冲。

Delivery of nanosecond laser pulses by multi-mode anti-resonant hollow core fiber at 1 µm wavelength.

作者信息

Zhao Meng, Yu Fei, Wu Dakun, Zhu Xinyue, Chen Si, Wang Meng, Liu Minzhe, Zhao Kun, Zhai Ruizhan, Jia Zhongqing, Knight Jonathan

出版信息

Opt Express. 2024 May 6;32(10):17229-17238. doi: 10.1364/OE.523786.

Abstract

In this paper we explore the application of low-loss multimode anti-resonant hollow-core fiber (MM-AR-HCF) in the delivery of nanosecond laser pulses at 1 µm wavelength. MM-AR-HCF with large core offers a rich content of low-loss higher-order modes which plays a key role in the efficient coupling and transmission of high-power laser of low beam quality. In the experiment, laser pulses of an average pulse energy of 21.8 mJ with 14.6 ns pulse width (corresponding a peak power of 1.49 MW) are transmitted through MM-AR-HCF of 9.8 m length without damage. 85% transmission efficiency is achieved where the incident laser beam suffers a low beam quality with M and M of 2.18 and 1.99 respectively. Laser-induced damage threshold (LIDT) of MM-AR-HCF was measured to be 22.6 mJ for 85% transmission efficiency, which is 7 times higher than that for a multimode silica optical fiber with a large core of 200 µm.

摘要

在本文中,我们探讨了低损耗多模反谐振空芯光纤(MM-AR-HCF)在传输1μm波长纳秒激光脉冲方面的应用。具有大芯径的MM-AR-HCF提供了丰富的低损耗高阶模,这在低光束质量高功率激光的高效耦合和传输中起着关键作用。在实验中,平均脉冲能量为21.8 mJ、脉冲宽度为14.6 ns(对应峰值功率为1.49 MW)的激光脉冲通过长度为9.8 m的MM-AR-HCF传输而未受损。当入射激光束的光束质量较低,M²和M³分别为2.18和1.99时,实现了85%的传输效率。对于85%的传输效率,MM-AR-HCF的激光诱导损伤阈值(LIDT)测量为22.6 mJ,这比芯径为200μm的多模石英光纤高7倍。

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