物理
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相对论等离子体
量子电动力学
太赫兹辐射
原子物理学
辐射
计算物理学
核物理学
量子力学
机械
作者
Huangang Lu,Jiaxin Liu,Jie Cai,Xuezhi Wu,Jianyao Zhang,Qianyi Ma,Zhenan Wang,Yuhui Xia,Wenjun Ma,Chen Lin,Zan Nie,Jinqing Yu,Xinlu Xu,Xueqing Yan
摘要
Intense terahertz (THz) radiation with multiple cycles is of great interest in many active research fields ranging from particle acceleration to space communication. However, its generation remains a challenge since multi-cycle pulses produced from crystal-based or plasma-based methods are usually characterized by non-relativistic intensity, while plasma-based techniques can deliver much more intense pulses but with few cycles. In this study, we propose a scheme to generate THz radiation with relativistic intensity and multi-cycle duration by shooting a ∼100 TW laser pulse into an underdense plasma with a structured density profile. In this process, laser photons are decelerated by the co-moving refractive index gradient formed by the laser–plasma interaction and slide back to be stored in the self-induced long plasma wake. Particle-in-cell simulations demonstrate the generation of THz radiation with a frequency of 21.4 THz, a pulse length of ∼100 μm (∼7 cycles), a pulse energy up to 18.5 mJ, and an energy conversion efficiency of ∼2%. These pulses may enable access to unexplored regimes of strong THz-material interaction, or open up possibilities for relativistic THz optics.
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