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在周期性分层克尔介质中的孤束传播能够实现高效脉冲压缩和模式自清洁。

Solitary beam propagation in periodic layered Kerr media enables high-efficiency pulse compression and mode self-cleaning.

作者信息

Zhang Sheng, Fu Zongyuan, Zhu Bingbing, Fan Guangyu, Chen Yudong, Wang Shunjia, Liu Yaxin, Baltuska Andrius, Jin Cheng, Tian Chuanshan, Tao Zhensheng

机构信息

State Key Laboratory of Surface Physics and Department of Physics, Fudan University, Shanghai, China.

Institute of Photonics, TU Wien, Gusshausstrasse 27/387, Vienna, Austria.

出版信息

Light Sci Appl. 2021 Mar 10;10(1):53. doi: 10.1038/s41377-021-00495-9.

Abstract

Generating intense ultrashort pulses with high-quality spatial modes is crucial for ultrafast and strong-field science and can be achieved by nonlinear supercontinuum generation (SCG) and pulse compression. In this work, we propose that the generation of quasi-stationary solitons in periodic layered Kerr media can greatly enhance the nonlinear light-matter interaction and fundamentally improve the performance of SCG and pulse compression in condensed media. With both experimental and theoretical studies, we successfully identify these solitary modes and reveal their unified condition for stability. Space-time coupling is shown to strongly influence the stability of solitons, leading to variations in the spectral, spatial and temporal profiles of femtosecond pulses. Taking advantage of the unique characteristics of these solitary modes, we first demonstrate single-stage SCG and the compression of femtosecond pulses from 170 to 22 fs with an efficiency >85%. The high spatiotemporal quality of the compressed pulses is further confirmed by high-harmonic generation. We also provide evidence of efficient mode self-cleaning, which suggests rich spatiotemporal self-organization of the laser beams in a nonlinear resonator. This work offers a route towards highly efficient, simple, stable and highly flexible SCG and pulse compression solutions for state-of-the-art ytterbium laser technology.

摘要

产生具有高质量空间模式的高强度超短脉冲对于超快和强场科学至关重要,并且可以通过非线性超连续谱产生(SCG)和脉冲压缩来实现。在这项工作中,我们提出在周期性分层克尔介质中产生准静态孤子可以极大地增强非线性光与物质的相互作用,并从根本上改善凝聚介质中SCG和脉冲压缩的性能。通过实验和理论研究,我们成功识别了这些孤立模式并揭示了它们统一的稳定条件。时空耦合被证明会强烈影响孤子的稳定性,导致飞秒脉冲的光谱、空间和时间轮廓发生变化。利用这些孤立模式的独特特性,我们首次展示了单级SCG以及将飞秒脉冲从170 fs压缩至22 fs,效率大于85%。高次谐波产生进一步证实了压缩脉冲的高时空质量。我们还提供了高效模式自清洁的证据,这表明在非线性谐振器中激光束具有丰富的时空自组织。这项工作为最先进的镱激光技术提供了一条通往高效、简单、稳定且高度灵活的SCG和脉冲压缩解决方案的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/812c/7946960/e5b213a43a04/41377_2021_495_Fig1_HTML.jpg

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