论文标题

观察空气中激光等离子体内部的Epsilon-Near-Zero(ENZ)效应

Observation of the epsilon-near-zero (ENZ) effect inside the laser plasma in air

论文作者

Zhao, Jiayu

论文摘要

在Epsilon-Near-Zero(ENZ)材料的世界中,该血浆在等离子体频率(WP)处的天然ENZ特性是独一无二的。然而,对于飞秒激光丝中的空气等离子体,在Terahertz(THZ)带中使用WP(也称为宽带THZ发射器),长期以来可能忽略了ENZ效应。在这项工作中,研究了空气中的激光等离子体与辐射的THZ波之间的相互作用,ENZ点的THZ共振吸收吸收是在理论上和实验上引起了表面等离子体波的产生,这是我们的最佳知识。具体而言,这种ENZ效应沿着多个结构域的血浆细丝伴随着THZ调节,包括线性到椭圆形的THZ极化转换和远场THZ剖面的多环模式等。鉴于这些新颖的ENZ诱导的现象,对这一重要等离子THZ源的理解已经富集了。 Moreover, by extending the laser plasma to the role of ENZ material, it is promising to expedite related applications benefiting from the ENZ nature, e.g., the strong spatial confinement of THz waves inside the ENZ region between the bi-filaments array, which realized all-optical time-domain integration of broadband THz pulses as we recently displayed in [arXiv].

In the world of epsilon-near-zero (ENZ) materials, the plasma is unique for its natural ENZ properties at the plasma frequency (wp). However, for the air plasma during femtosecond laser filamentation with wp in terahertz (THz) band, which is also known as a broadband THz emitter, the possible ENZ effect has long been neglected. In this work, interactions between the laser plasma in air and the radiated THz waves were investigated, and the THz resonance absorption at the ENZ point, which gave rise to the generation of surface plasmon waves, has been theoretically and experimentally demonstrated for the first time, to the best of our knowledge. Specifically, this ENZ effect was accompanied with THz modulations along the plasma filament in multiple domains, including the linear-to-elliptical THz polarization conversion and the multi-ring pattern of far-field THz profiles, etc. Thanks to these novel ENZ-induced phenomena, the understanding of this important plasma-based THz source has been enriched. Moreover, by extending the laser plasma to the role of ENZ material, it is promising to expedite related applications benefiting from the ENZ nature, e.g., the strong spatial confinement of THz waves inside the ENZ region between the bi-filaments array, which realized all-optical time-domain integration of broadband THz pulses as we recently displayed in [arXiv].

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