Martínez P González de Alaiza, Babushkin I, Bergé L, Skupin S, Cabrera-Granado E, Köhler C, Morgner U, Husakou A, Herrmann J
CEA-DAM, DIF, F-91297 Arpajon, France.
Institute of Quantum Optics, Leibniz University Hannover, Welfengarten 1 30167, Hannover, Germany.
Phys Rev Lett. 2015 May 8;114(18):183901. doi: 10.1103/PhysRevLett.114.183901. Epub 2015 May 6.
Broadband ultrashort terahertz (THz) pulses can be produced using plasma generation in a noble gas ionized by femtosecond two-color pulses. Here we demonstrate that, by using multiple-frequency laser pulses, one can obtain a waveform which optimizes the free electron trajectories in such a way that they acquire the largest drift velocity. This allows us to increase the THz conversion efficiency to 2%, an unprecedented performance for THz generation in gases. In addition to the analytical study of THz generation using a local current model, we perform comprehensive 3D simulations accounting for propagation effects which confirm this prediction. Our results show that THz conversion via tunnel ionization can be greatly improved with well-designed multicolor pulses.
利用飞秒双色脉冲使惰性气体电离产生等离子体,可产生宽带超短太赫兹(THz)脉冲。在此我们证明,通过使用多频激光脉冲,能够获得一种波形,该波形以一种使自由电子获得最大漂移速度的方式优化自由电子轨迹。这使我们能够将太赫兹转换效率提高到2%,这对于气体中太赫兹产生而言是前所未有的性能。除了使用局部电流模型对太赫兹产生进行分析研究外,我们还进行了考虑传播效应的全面三维模拟,证实了这一预测。我们的结果表明,通过精心设计的多色脉冲,可大大提高通过隧道电离实现的太赫兹转换。