项目名称: 涡旋强飞秒激光脉冲在空气中非线性传输特性研究
项目编号: No.11504116
项目类型: 青年科学基金项目
立项/批准年度: 2016
项目学科: 数理科学和化学
项目作者: 林志阳
作者单位: 华侨大学
项目金额: 20万元
中文摘要: 飞秒激光脉冲在空气中非线性传输所成的光丝,具有远程探测等方面的应用价值,也是研究强光场与原子分子相互作用的独特通道。目前,成丝基本物理图像虽已逐渐清晰,但仍存在高阶克尔效应是否可以忽略等争议,而有效调控光丝的形态和时空分布则是其应用价值得以实现的关键。在本项目中,利用具有特殊相位分布和携带特定光子轨道角动量的涡旋飞秒光束,突破以往通常只研究涡旋光束在非线性传输过程中结构稳定性的局限,我们拟系统研究涡旋飞秒光束在空气中的丝化现象及其诱导的超连续谱随功率、拓扑荷等光场参数变化的演化规律,有望获得比普通飞秒光束更远距离的激光成丝和更宽的超连续谱,并通过驱动光场实现对光丝形态和时空分布的操控,进而基于强场分子电离理论,研究丝中强光场下的分子电离动力学,揭示等离子体的产生机制和影响其时空演化的因素,获得对飞秒激光成丝物理图像更为深入而全面的认识。
中文关键词: 涡旋;强飞秒激光脉冲;非线性传输
英文摘要: Femtosecond laser filamentation has attracted considerable interest because of its wide range of applications (e.g., remote sensing), and its special fundamental science perspective to study the laser-matter interaction motivated by the nonlinear phenomena(e.g., supercontinnum generation) induced in filamentation. The key to achieving these applications is to establish the complete picture of filamentation. Unfortunately, it encounters controversial debates (e.g., the defocusing of negative higher-order Kerr effect), and needs breakthrough on controlling the formation and temporal-spatial distribution of filaments before it is brought into practical applications. The femtosecond vortex beam, which has a screw-type phase distribution and carries orbital angular momentum, provides a special channel to modulate the laser-matter interaction and control the characteristics of filaments. In contrast to the past researches which focused on the stability of vortex structures during highly nonlinear processes, this project will systemically investigate the propagation of vortex beams in air and supercontinnum spectra taking place during filamentation by adjusting the parameters of the vortex light field(e.g., power and topological charge). It holds promise for lengthening the propagation distance and broadening the supercontinnum spectra of the focused vortex beam as compared with the vortex-free beam(i.e., traditional Gaussian beams), and developing a new method to manipulate filaments. Furthermore, from the perspective of the molecular strong-field ionization , the dynamics of molecule in the optical field inside the filaments will be explored for revealing the physical mechanism of plasma and its temporal-spatial distribution, and deepening the understanding of the physical picture of the femtosecond laser filamentation.
英文关键词: Vortex ;Intense Femtosecond Pulses;Nonlinear Propagation