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Femtosecond laser filamentation in simulated atmospheric turbulence[Invited]

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【作者】 郭杰伟孙陆王悦政薛嘉云张智刘海毅陶诗诗钱文启齐鹏飞林列刘伟伟

【Author】 Jiewei Guo;Lu Sun;Yuezheng Wang;Jiayun Xue;Zhi Zhang;Haiyi Liu;Shishi Tao;Wenqi Qian;Pengfei Qi;Lie Lin;Weiwei Liu;Institute of Modern Optics,Eye Institute,Nankai University;Tianjin Key Laboratory of Micro-scale Optical Information Science and Technology;Tianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology;

【通讯作者】 张智;

【机构】 Institute of Modern Optics,Eye Institute,Nankai UniversityTianjin Key Laboratory of Micro-scale Optical Information Science and TechnologyTianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology

【摘要】 The effects of turbulence intensity and turbulence region on the distribution of femtosecond laser filaments are experimentally elaborated. Through the ultrasonic signals emitted by the filaments, it is observed that increasing turbulence intensity and an expanding turbulence active region cause an increase in the start position of the filament and a decrease in filament length, which can be well explained by theoretical calculation. It is also observed that the random perturbation of the air refractive index caused by atmospheric turbulence expands the spot size of the filament.Additionally, when the turbulence refractive index structure constant reaches 8.37 × 10-12m-2/3, multiple filaments are formed. Furthermore, the standard deviation of the transverse displacement of filament is found to be proportional to the square root of the turbulent structure constant under the experimental turbulence parameters in this paper. These results contribute to the study of femtosecond laser propagation mechanisms in complex atmospheric turbulence conditions.

【Abstract】 The effects of turbulence intensity and turbulence region on the distribution of femtosecond laser filaments are experimentally elaborated. Through the ultrasonic signals emitted by the filaments, it is observed that increasing turbulence intensity and an expanding turbulence active region cause an increase in the start position of the filament and a decrease in filament length, which can be well explained by theoretical calculation. It is also observed that the random perturbation of the air refractive index caused by atmospheric turbulence expands the spot size of the filament.Additionally, when the turbulence refractive index structure constant reaches 8.37 × 10-12m-2/3, multiple filaments are formed. Furthermore, the standard deviation of the transverse displacement of filament is found to be proportional to the square root of the turbulent structure constant under the experimental turbulence parameters in this paper. These results contribute to the study of femtosecond laser propagation mechanisms in complex atmospheric turbulence conditions.

【基金】 supported by the National Key Research and Development Program of China (No. 2018YFB0504400);the Fundamental Research Funds for the Central Universities (No. 63223052)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2023年11期
  • 【分类号】TN24
  • 【下载频次】11
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