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相对论区近临阈等离子体中的受激喇曼散射。

Stimulated Raman scattering in the relativistic regime in near-critical plasmas.

机构信息

Université de Bordeaux-CNRS-CEA, Centre Lasers Intenses et Applications, UMR 5107, F-33405 Talence, France.

出版信息

Phys Rev E. 2017 Jan;95(1-1):013208. doi: 10.1103/PhysRevE.95.013208. Epub 2017 Jan 17.

Abstract

Interaction of a high-intensity short laser pulse with near-critical plasmas allows us to achieve extremely high coupling efficiency and transfer laser energy to energetic ions. One-dimensional particle-in-cell simulations are considered to detail the processes involved in the energy transfer. A confrontation of the numerical results with the theory highlights a key role played by the process of stimulated Raman scattering in the relativistic regime. The interaction of a 1 ps laser pulse (I∼6×10^{18}Wcm^{-2} with an undercritical (0.5n_{c}) homogeneous plasma leads to a very high plasma absorption reaching 68% of the laser pulse energy. This permits a homogeneous electron heating all along the plasma and an efficient ion acceleration at the plasma edges and in cavities.

摘要

高功率短激光脉冲与近临阈等离子体的相互作用使我们能够实现极高的耦合效率,并将激光能量转移到高能离子中。一维的粒子模拟被用来详细研究能量转移的过程。数值结果与理论的对比凸显了在相对论条件下受激喇曼散射过程的关键作用。在激光脉冲(I∼6×10^{18}Wcm^{-2})与亚临阈(0.5n_{c})均匀等离子体的相互作用中,1 ps 的激光脉冲导致了非常高的等离子体吸收,达到了激光脉冲能量的 68%。这使得整个等离子体均匀加热,并在等离子体边缘和空腔中实现了有效的离子加速。

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