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空气中飞秒激光丝内中性氮分子的荧光和激光作用:机理与应用

Fluorescence and lasing of neutral nitrogen molecules inside femtosecond laser filaments in air: mechanism and applications.

作者信息

Mei Haicheng, Jiang Hongbing, Houard Aurélien, Tikhonchuk Vladimir, Oliva Eduardo, Mysyrowicz André, Gong Qihuang, Wu Chengyin, Liu Yi

机构信息

Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology, Shanghai 200093, China.

State Key Laboratory for Mesoscopic Physics, School of Physics, Peking University, Beijing 100871, China.

出版信息

Phys Chem Chem Phys. 2024 Sep 18;26(36):23528-23543. doi: 10.1039/d4cp01626b.

Abstract

High power femtosecond laser pulses launched in air undergo nonlinear filamentary propagation, featuring a bright and thin plasma channel in air with its length much longer than the Rayleigh length of the laser beam. During this nonlinear propagation process, the laser pulses experience rich and complex spatial and temporal transformations. With its applications ranging from supercontinuum generation, laser pulse compression, remote sensing to triggering of lightning, the underlying physical mechanism of filamentation has been intensively studied. In this review, we will focus on the fluorescence and cavity-free lasing effect of the plasma filaments in air. The different mechanisms underlying the fluorescence of the excited neutral nitrogen molecules will be throughly examined and it is concluded that the electron collision excitation is the dominant channel for the formation of the excited nitrogen molecules. The recently discovered "air lasing" effect, a cavity-free bidirectional lasing emission emitted by the filaments, will be introduced and its main properties will be emphasized. The applications of the fluorescence and lasing effect of the neutral nitrogen molecules will be introduced, with two examples on spectroscopy and detection of electric field. Finally, we discuss the quenching effect of the lasing effect in atmosphere and the mechanisms responsible will be analyzed. An outlook for the achievement of backward lasing in air will be briefly presented.

摘要

在空气中发射的高功率飞秒激光脉冲会经历非线性丝状传播,其特征是在空气中形成一条明亮且细的等离子体通道,通道长度远大于激光束的瑞利长度。在这个非线性传播过程中,激光脉冲会经历丰富而复杂的空间和时间变换。由于其应用涵盖超连续谱产生、激光脉冲压缩、遥感以及雷电触发等领域,丝状化的潜在物理机制已得到深入研究。在这篇综述中,我们将聚焦于空气中等离子体细丝的荧光和无腔激光效应。我们将全面研究激发态中性氮分子荧光的不同机制,并得出电子碰撞激发是形成激发态氮分子的主要通道这一结论。我们将介绍最近发现的“空气激光”效应,即细丝发射的无腔双向激光发射,并强调其主要特性。我们将介绍中性氮分子荧光和激光效应的应用,给出光谱学和电场检测方面的两个例子。最后,我们讨论大气中激光效应的猝灭效应并分析其相关机制。我们将简要展望在空气中实现后向激光的成果。

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