Laser-triggered terahertz emission from near-critical-density targets.

IF 2.4 3区 物理与天体物理 Q2 PHYSICS, FLUIDS & PLASMAS Physical Review E Pub Date : 2024-12-01 DOI:10.1103/PhysRevE.110.065203
V Yu Bychenkov, A V Brantov, M G Lobok, A S Kuratov
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Abstract

Femtosecond laser pulse propagation in a relativistic self-trapping (RST) regime in a near-critical density plasma makes it possible to maximize the total charge of the accelerating electrons and laser-to-electrons conversion rate, that can be used to provide a large amount of the terahertz range coherent transition radiation. The three-dimensional particle-in-cell simulations demonstrate how such transition radiation generates when electrons escape into vacuum either from the low-density target itself, or after passing through a thin foil located at the target end. The advantage of the RST regime for the generation of terahertz pulses is clearly demonstrated as compared to laser irradiation of such a standard target as a foil with preplasma on its front side. The simulation performed has shown that for the optimized laser-target matching a 2-J femtosecond laser pulse is able to produce quasiunipolar terahertz pulses with energy exceeding 100 mJ.

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近临界密度目标的激光触发太赫兹发射。
飞秒激光脉冲在近临界密度等离子体中的相对论性自俘获(RST)状态下传播,可以最大化加速电子的总电荷和激光到电子的转化率,从而可以提供大量的太赫兹相干跃迁辐射。三维细胞内粒子模拟演示了当电子从低密度目标本身逃逸到真空中时,或者在穿过位于目标端的薄箔后,如何产生这种跃迁辐射。与前面有预等离子体的箔片等标准目标的激光照射相比,RST制度产生太赫兹脉冲的优势得到了清楚的证明。仿真结果表明,对于优化后的激光目标匹配,2焦飞秒激光脉冲能够产生能量超过100 mJ的准单极太赫兹脉冲。
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来源期刊
Physical Review E
Physical Review E PHYSICS, FLUIDS & PLASMASPHYSICS, MATHEMAT-PHYSICS, MATHEMATICAL
CiteScore
4.50
自引率
16.70%
发文量
2110
期刊介绍: Physical Review E (PRE), broad and interdisciplinary in scope, focuses on collective phenomena of many-body systems, with statistical physics and nonlinear dynamics as the central themes of the journal. Physical Review E publishes recent developments in biological and soft matter physics including granular materials, colloids, complex fluids, liquid crystals, and polymers. The journal covers fluid dynamics and plasma physics and includes sections on computational and interdisciplinary physics, for example, complex networks.
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