Wang Linzheng, Zhang Zhelin, Chen Siyu, Chen Yanping, Hu Xichen, Zhu Mingyang, Yan Wenchao, Xu Hao, Sun Lili, Chen Min, Liu Feng, Chen Liming, Zhang Jie, Sheng Zhengming
Key Laboratory for Laser and Plasma (Ministry of Education), School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China.
Collaborative Innovation Centre of IFSA, Shanghai Jiao Tong University, Shanghai 200240, China.
Phys Rev Lett. 2024 Apr 19;132(16):165002. doi: 10.1103/PhysRevLett.132.165002.
We report the experimental measurement of millijoule terahertz (THz) radiation emitted in the backward direction from laser wakefields driven by a femtosecond laser pulse of few joules interacting with a gas target. By utilizing frequency-resolved energy measurement, it is found that the THz spectrum exhibits two peaks located at about 4.5 and 9.0 THz, respectively. In particular, the high frequency component emerges when the drive laser energy exceeds 1.26 J, at which electron acceleration in the forward direction is detected simultaneously. Theoretical analysis and particle-in-cell simulations indicate that the THz radiation is generated via mode conversion from the laser wakefields excited in plasma with an up-ramp profile, where radiations both at the local electron plasma frequency and its harmonics are produced. Such intense THz sources may find many applications in ultrafast science, e.g., manipulating the transient states of matter.
我们报告了由几焦耳的飞秒激光脉冲与气体靶相互作用驱动的激光尾场向后发射的毫焦耳太赫兹(THz)辐射的实验测量结果。通过利用频率分辨能量测量,发现太赫兹光谱呈现出分别位于约4.5和9.0太赫兹处的两个峰值。特别地,当驱动激光能量超过1.26焦耳时,高频分量出现,此时同时检测到正向电子加速。理论分析和粒子模拟表明,太赫兹辐射是通过从具有上升斜坡轮廓的等离子体中激发的激光尾场进行模式转换产生的,在该过程中产生了局部电子等离子体频率及其谐波的辐射。这种强太赫兹源可能在超快科学中有许多应用,例如,操纵物质的瞬态状态。