Opt Lett. 2022 Nov 1;47(21):5676-5679. doi: 10.1364/OL.474317.
In this paper, the effect of the laser repetition rate on the long-distance femtosecond laser filament in air is investigated by measuring the fluorescence characteristic of the filament. A femtosecond laser filament emits fluorescence due to the thermodynamical relaxation of the plasma channel. Experimental results show that as the repetition rate of femtosecond laser increases, the fluorescence of the filament induced by a single laser pulse weakens, and the position of the filament moves away from the focusing lens. These phenomena may be attributed to the slow hydrodynamical recovery process of air after being excited by a femtosecond laser filament, whose characteristic time is on the millisecond time scale and comparable to the inter-pulse duration of the femtosecond laser pulse train. This finding suggests that at a high laser repetition rate, to generate an intense laser filament, the femtosecond laser beam should scan across the air to eliminate the adverse effect of slow air relaxation, which is beneficial to laser filament remote sensing.
本文通过测量丝状的荧光特性,研究了激光重复率对空气中长距离飞秒激光丝的影响。飞秒激光丝由于等离子体通道的热力学弛豫而发出荧光。实验结果表明,随着飞秒激光重复率的增加,单个激光脉冲诱导的丝状荧光减弱,丝状位置远离聚焦透镜。这些现象可能归因于飞秒激光丝激发后的空气的缓慢流体动力学恢复过程,其特征时间在毫秒量级,与飞秒激光脉冲串的脉冲间隔相当。这一发现表明,在高激光重复率下,要产生强的激光丝,飞秒激光束应该扫描穿过空气以消除空气缓慢弛豫的不利影响,这有利于激光丝遥感。