超光速激光等离子体细丝的贝塞尔太赫兹脉冲

Zhelin Zhang, Jiayang Zhang, Yanping Chen, Tianhao Xia, Linzheng Wang, B. Han, Feng He, Z. Sheng, J Zhang
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引用次数: 18

摘要

用带轴突的飞秒激光脉冲诱导空气中的双色激光灯丝产生具有贝塞尔光束轮廓的太赫兹辐射。对太赫兹辐射贝塞尔环进行远场采集后,反演其时空分布。提出了贝塞尔太赫兹脉冲的理论模型,认为这种脉冲是由等离子体通道内非均匀超光速灯丝结构和双色激光元件的相变共同作用产生的。这两种效应分别导致来自不同等离子体源的太赫兹辐射沿激光灯丝产生波前交叉和相消干涉。与其他方法相比,我们的技术可以支持产生具有宽频谱带宽的贝塞尔脉冲。这种贝塞尔脉冲可以传播到远场而没有明显的空间扩散,这将为太赫兹应用提供新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bessel Terahertz Pulses from Superluminal Laser Plasma Filaments
Terahertz radiation with a Bessel beam profile is demonstrated experimentally from a two-color laser filament in air, which is induced by tailored femtosecond laser pulses with an axicon. The temporal and spatial distributions of Bessel rings of the terahertz radiation are retrieved after being collected in the far field. A theoretical model is proposed, which suggests that such Bessel terahertz pulses are produced due to the combined effects of the inhomogeneous superluminal filament structure and the phase change of the two-color laser components inside the plasma channel. These two effects lead to wavefront crossover and constructive/destructive interference of terahertz radiation from different plasma sources along the laser filament, respectively. Compared with other methods, our technique can support the generation of Bessel pulses with broad spectral bandwidth. Such Bessel pulses can propagate to the far field without significant spatial spreading, which shall provide new opportunities for terahertz applications.
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CiteScore
11.40
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