Ivanov Maksym, Thiele Illia, Bergé Luc, Skupin Stefan, Buožius Danas, Vaičaitis Virgilijus
Opt Lett. 2019 Aug 1;44(15):3889-3892. doi: 10.1364/OL.44.003889.
We investigate the generation of broadband terahertz (THz) pulses with phase singularity from air plasmas created by fundamental and second harmonic laser pulses. We show that when the second harmonic beam carries a vortex charge, the THz beam acquires a vortex structure as well. A generic feature of this THz vortex is that the intensity is modulated along the azimuthal angle, which can be attributed to the spatially varying relative phase difference between the two pump harmonics. Fully space- and time-resolved numerical simulations reveal that transverse instabilities of the pump further affect the emitted THz field along nonlinear propagation, which may produce additional singularities resulting in a rich vortex structure. The predicted intensity modulation is experimentally demonstrated with a thermal camera, in excellent agreement with simulation results. The presence of phase singularities in the experiment is revealed by astigmatic transformation of the beam using a cylindrical mirror.
我们研究了由基频和二次谐波激光脉冲产生的空气等离子体所产生的具有相位奇点的宽带太赫兹(THz)脉冲。我们表明,当二次谐波光束携带涡旋电荷时,太赫兹光束也会获得涡旋结构。这种太赫兹涡旋的一个普遍特征是强度沿方位角调制,这可归因于两个泵浦谐波之间空间变化的相对相位差。全时空分辨数值模拟表明,泵浦的横向不稳定性在非线性传播过程中进一步影响发射的太赫兹场,这可能产生额外的奇点,从而导致丰富的涡旋结构。用热成像仪对预测的强度调制进行了实验验证,与模拟结果非常吻合。实验中相位奇点的存在通过使用柱面镜对光束进行像散变换得以揭示。