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Low-velocity ion stopping in a dense and low-temperature plasma target

机译:致密低温等离子体靶中的低速离子停止

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摘要

We investigate the stopping specificities involved in the heating of thin foils irradiated by intense ion beams in the 0.3-3 MeV/amu energy range and in close vicinity of the Bragg peak. Considering a swiftly ionized target to eV temperatures before expansion while retaining solid-state density, a typical warm dense matter (WDM) situation thus arises. We stress low V_p stopping through ion diffusion in the given target plasma. This allows to include the case of a strongly magnetized target in a guiding center approximation. We also demonstrate that the ion projectile penetration depth in target is significantly affected by multiple scattering on target electrons. The given plasma target is taken weakly coupled with Maxwell electron either with no magnetic field (B = 0) or strongly magnetized (B ≠ 0). Dynamical coupling between ion projectiles energy losses and projectiles charge state will also be addressed.
机译:我们研究了在0.3-3 MeV / amu能量范围内以及在布拉格峰附近,强离子束辐照的薄箔的加热中止的特异性。考虑到在膨胀之前迅速离子化到eV温度的目标,同时保持固态密度,因此出现了典型的温致密物质(WDM)情况。我们强调通过给定目标等离子体中的离子扩散阻止低V_p。这允许在引导中心近似中包括强磁化目标的情况。我们还证明了离子在靶中的弹入深度受靶电子的多次散射影响很大。给定的等离子体目标是在没有磁场(B = 0)或强磁化(B≠0)的情况下与麦克斯韦电子进行弱耦合的。也将解决离子弹丸能量损失与弹丸电荷状态之间的动态耦合。

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