Mondal Sudipta, Shirozhan Mojtaba, Choudhary Shivani, Nelissen Kwinten, Tzallas Paraskevas, Charalambidis Dimitris, Varjú Katalin, Kahaly Subhendu
ELI-ALPS, ELI-HU Non-Profit Ltd., Wolfgang Sandner utca 3., Szeged, 6728, Hungary.
Institute of Physics, University of Szeged, Dóm tér 9, Szeged, 6720, Hungary.
Sci Rep. 2022 Aug 11;12(1):13668. doi: 10.1038/s41598-022-17762-3.
Ultrafast plasma dynamics play a pivotal role in the relativistic high harmonic generation, a phenomenon that can give rise to intense light fields of attosecond duration. Controlling such plasma dynamics holds key to optimize the relevant sub-cycle processes in the high-intensity regime. Here, we demonstrate that the optimal coherent combination of two intense ultrashort pulses centered at two-colors (fundamental frequency, [Formula: see text] and second harmonic, [Formula: see text]) can lead to an optimal shape in relativistic intensity driver field that yields such an extraordinarily sensitive control. Conducting a series of two-dimensional (2D) relativistic particle-in-cell (PIC) simulations carried out for currently achievable laser parameters and realistic experimental conditions, we demonstrate that an appropriate combination of [Formula: see text] along with a precise delay control can lead to more than three times enhancement in the resulting high harmonic flux. Finally, the two-color multi-cycle field synthesized with appropriate delay and polarization can all-optically suppress several attosecond bursts while favourably allowing one burst to occur, leading to the generation of intense isolated attosecond pulses without the need of any sophisticated gating techniques.
超快等离子体动力学在相对论高次谐波产生中起着关键作用,这一现象能够产生阿秒持续时间的强光场。控制这种等离子体动力学是优化高强度 regime 中相关亚周期过程的关键。在此,我们证明以两种颜色(基频,[公式:见原文] 和二次谐波,[公式:见原文])为中心的两个强超短脉冲的最佳相干组合可导致相对论强度驱动场的最佳形状,从而实现这种极其灵敏的控制。针对当前可实现的激光参数和实际实验条件进行了一系列二维 (2D) 相对论粒子模拟,我们证明 [公式:见原文] 的适当组合以及精确的延迟控制可使产生的高次谐波通量提高三倍以上。最后,通过适当延迟和偏振合成的双色多周期场可以全光抑制几个阿秒脉冲串,同时有利地允许一个脉冲串出现,从而无需任何复杂的选通技术即可产生强孤立阿秒脉冲。