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Resonant Interactions Between Protons and Obliquev Alfven/Ion-Cyclotron Waves

机译:质子与倾斜alfven /离子波浪之间的共振相互作用

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Resonant interactions between ions and Alfven/ion-cyclotron (A/IC) waves may play an important role in the heating and acceleration of the fast solar wind. Although such interactions have been studied extensively for "parallel" waves, whose wave vectors k are aligned with the background magnetic field B0, much less is known about interactions between ions and oblique A/IC waves, for which the angle θ between k and B_0 is nonzero. In this paper, we present new numerical results on resonant cyclotron interactions between protons and oblique A/IC waves in collisionless low-beta plasmas such as the solar corona. We find that if some mechanism generates oblique high-frequency A/IC waves, then these waves initially modify the proton distribution function in such a way that it becomes unstable to parallel waves. Parallel waves are then amplified to the point that they dominate the wave energy at the large parallel wave numbers at which the waves resonate with the particles. Pitch-angle scattering by these waves then causes the plasma to evolve towards a state in which the proton distribution is constant along a particular set of nested "scattering surfaces" in velocity space, whose shapes have been calculated previously. As the distribution function approaches this state, the imaginary part of the frequency of parallel A/IC waves drops continuously towards zero, but oblique waves continue to undergo cyclotron damping while simultaneously causing protons to diffuse across these kinetic shells to higher energies. We conclude that oblique A/IC waves can be more effective at heating protons than parallel A/IC waves, because for oblique waves the plasma does not relax towards a state in which proton damping of oblique A/IC waves ceases.
机译:离子和阿尔芬/离子回旋共振之间的相互作用(A / IC)波可能在快速太阳风的加热和加速了重要作用。尽管这种相互作用已经为“平行”波,其波向量k,其中背景磁场B0被对准,更不用说是已知大约离子和斜A / IC波之间的相互作用广泛的研究,其k和B_0之间的角度θ非零。在本文中,在碰撞低-β等离子体质子和斜A / IC波之间谐振回旋加速器的相互作用,我们提出了新的数值结果如日冕。我们发现,如果一些机构产生倾斜高频A / IC波,然后这些波最初修改质子分布函数以这样的方式,它变得不稳定,平行波。然后平行波被放大到如此地步,它们支配波能在在该波与颗粒谐振的大平行波数。由这些波的间距角散射然后使等离子体朝向其中质子分布是沿着特定的一组速度空间,其形状已经被先前计算的嵌套的“散射表面”的恒定的状态发展。作为分布函数接近该状态下,平行A的频率的虚部/ IC波持续下降到零,而是斜向波继续发生回旋加速器阻尼而同时引起质子跨越这些动力学壳扩散到更高的能量。我们的结论是斜A / IC波可以处于比平行A / IC波加热质子更有效的,因为对于斜向波的等离子体不向其中质子阻尼斜A / IC波停止的状态放松。

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