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Stopping of heavy ions in plasmas at strong coupling [Review]

机译:强耦合阻止等离子体中的重离子[综述]

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Standard approaches to the energy loss of ions in plasmas like the dielectric linear response or the binary collision model are strictly valid only in the regimes where the plasma is close to ideal and the coupling between projectile-ion and the plasma target is sufficiently weak. In this review we explore the stopping Dower in regimes where these conditions are not met. Actually relevant fields of application are heavy ion driven inertial fusion and the cooling of beams of charged particles by electrons. The conventional linear mean-field treatments are extended by many-body methods and particle simulations to account for strong correlations between the particles and for nonlinear coupling. We report the following important results in connection with the stopping at strong coupling: The energy loss of an ion scales with its charge approximately like Z(1.5), the effective screening length depends on Z and is larger than the Debye length. Slow highly charged ions are surrounded by a cloud of electrons trapped by many body collisions. Quantum effects like the wave nature of the electrons and Pauli-blocking reduce the stopping power by mollifying the effective interactions. (C) 1999 Elsevier Science B.V. All rights reserved. [References: 201]
机译:诸如电介质线性响应或二元碰撞模型之类的等离子体中离子能量损失的标准方法仅在等离子体接近理想且弹丸离子与等离子体目标之间的耦合足够弱的条件下严格有效。在这篇综述中,我们探讨了在不满足这些条件的情况下停止使用的Dower。实际相关的应用领域是重离子驱动的惯性聚变和电子对带电粒子束的冷却。通过多体方法和粒子模拟扩展了常规的线性平均场处理,以解决粒子之间的强相关性和非线性耦合问题。我们报告了与强耦合终止有关的以下重要结果:离子的能量损失与其电荷近似成Z(1.5)一样,有效的筛选长度取决于Z,并且大于Debye长度。缓慢带电的离子被许多人体碰撞所困住的电子云所包围。像电子的波性质和泡利阻挡这样的量子效应通过使有效的相互作用变缓而降低了阻止能力。 (C)1999 Elsevier Science B.V.保留所有权利。 [参考:201]

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