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Collisional effects on the relativistic current-filamentation instability in dense plasmas

机译:碰撞对稠密等离子体中相对论电流丝不稳定性的影响

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摘要

Collisional effects on the current-filamentation instability (CFI), accounting for the space charge effect (SCE), are investigated kinetically for a relativistic beam propagating in dense plasmas. It is shown that collisions can completely suppress the SCE in low temperature dense plasma, leading to enhancement of the CFI. This kind of decoupling mechanism is quite different from the well-known resistive mechanism [Molvig (1975). Phys. Rev. Lett. 35, 1504]. In particular, we find the present decoupling mechanism can well explain the recent numerical simulation results [Karmakar et al. (2008). Phys. Rev. Lett. doi: 101, 255001]. In the parameter regime related to the laser-solid interaction and fast ignition scenario (FIS), the CFI growth rate with SCE included is enhanced in the low plasma density region through the decoupling mechanism. In the high plasma density region, it is enhanced mainly through the resistive mechanism.
机译:对于在致密等离子体中传播的相对论性光束,动力学研究了对电流丝不稳定性(CFI)的碰撞效应,考虑了空间电荷效应(SCE)。结果表明,碰撞可以完全抑制低温致密等离子体中的SCE,从而提高CFI。这种去耦机制与众所周知的电阻机制有很大的不同[Molvig(1975)。物理牧师35,1504]。特别是,我们发现当前的解耦机制可以很好地解释最近的数值模拟结果[Karmakar等。 (2008)。物理牧师doi:101,255001]。在与激光-固体相互作用和快速点火场景(FIS)相关的参数方案中,通过去耦机制,在低等离子体密度区域中,包含SCE的CFI增长率得到提高。在高等离子体密度区域,主要通过电阻机制增强了它。

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