Schütte Bernd, Weber Paul, Kovács Katalin, Balogh Emeric, Major Balázs, Tosa Valer, Han Songhee, Vrakking Marc J J, Varjú Katalin, Rouzée Arnaud
Opt Express. 2015 Dec 28;23(26):33947-55. doi: 10.1364/OE.23.033947.
We study two-color high-order harmonic generation in Neon with 790 nm and 1300 nm driving laser fields and observe an extreme-ultraviolet continuum that extends to photon energies of 160 eV. Using a 6-mm-long, high pressure gas cell, we optimize the HHG yield at high photon energies and investigate the effect of ionization and propagation under phase-matching conditions that allow us to control the temporal structure of the XUV emission. Numerical simulations that include the 3D propagation of the two-color laser pulse show that a bright isolated attosecond pulse with exceptionally high photon energies can be generated in our experimental conditions due to an efficient hybrid optical and phase-matching gating mechanism.
我们研究了在790纳米和1300纳米驱动激光场作用下氖气中的双色高次谐波产生,并观测到一个延伸至160电子伏特光子能量的极紫外连续谱。使用一个6毫米长的高压气体池,我们在高光子能量下优化了高次谐波产生的产率,并研究了在相位匹配条件下的电离和传播效应,这些条件使我们能够控制极紫外发射的时间结构。包含双色激光脉冲三维传播的数值模拟表明,由于一种高效的混合光学和相位匹配选通机制,在我们的实验条件下能够产生具有极高光子能量的明亮孤立阿秒脉冲。