Pak Taegyu, Rezaei-Pandari Mohammad, Kim Sang Beom, Lee Geonwoo, Wi Dae Hee, Hojbota Calin Ioan, Mirzaie Mohammad, Kim Hyeongmun, Sung Jae Hee, Lee Seong Ku, Kang Chul, Kim Ki-Yong
Center for Relativistic Laser Science, Institute for Basic Science, Gwangju, 61005, Korea.
Department of Physics and Photon Science, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Korea.
Light Sci Appl. 2023 Feb 6;12(1):37. doi: 10.1038/s41377-022-01068-0.
High-power terahertz radiation was observed to be emitted from a gas jet irradiated by 100-terawatt-class laser pulses in the laser-wakefield acceleration of electrons. The emitted terahertz radiation was characterized in terms of its spectrum, polarization, and energy dependence on the accompanying electron bunch energy and charge under various gas target conditions. With a nitrogen target, more than 4 mJ of energy was produced at <10 THz with a laser-to-terahertz conversion efficiency of ~0.15%. Such strong terahertz radiation is hypothesized to be produced from plasma electrons accelerated by the ponderomotive force of the laser and the plasma wakefields on the time scale of the laser pulse duration and plasma period. This model is examined with analytic calculations and particle-in-cell simulations to better understand the generation mechanism of high-energy terahertz radiation in laser-wakefield acceleration.
在电子的激光尾场加速过程中,观察到从由100太瓦级激光脉冲辐照的气体喷流中发射出高功率太赫兹辐射。在各种气体靶条件下,对发射出的太赫兹辐射的光谱、偏振以及其能量对伴随的电子束能量和电荷的依赖性进行了表征。使用氮气靶时,在低于10太赫兹的频率下产生了超过4毫焦的能量,激光到太赫兹的转换效率约为0.15%。据推测,这种强太赫兹辐射是由激光的有质动力和等离子体尾场在激光脉冲持续时间和等离子体周期的时间尺度上加速的等离子体电子产生的。通过解析计算和粒子模拟对该模型进行了研究,以更好地理解激光尾场加速中高能太赫兹辐射的产生机制。