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Evidence for a high-energy tail associated with foreshock field-aligned beams

机译:对高能尾巴与证据前震field-aligned梁

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The reduced particle distributions of field-aligned beams observed upstream of the bow shock are examined in detail using Cluster spacecraft. We find that the reduced parallel and perpendicular distribution forms can be strongly geometry-dependent. Above a certain critical value of the angle between the local shock normal and the direction of the magnetic field, θ_(Bn), the reduced distributions are remarkably well fit by Maxwellians. We have not found any significant changes to the spread in energies for beams at higher values of θ_(Bn). When the angle Bn decreases, leading to smaller beam velocities, a high-energy tail in the distribution appears. When the tail is present, the bulk of the distribution remains Maxwellian. The development of the high-energy tail is well correlated with decreases in the beam speed (or equivalently θ_(Bn)). Moreover, detailed examination of the angular distributions indicates that particles in the tails of the distributions propagate at significant pitch angles with respect to the magnetic field (are not field-aligned, as are those within the bulk of the distribution) and that these pitch angles are energy-dependent. These new observations do not fit any production mechanism expected at the shock or result from known wave-particle interactions upstream of or within the shock layer.
机译:减少粒子的分布field-aligned梁观察到上游的弓使用集群冲击详细检查宇宙飞船。可以强烈垂直分布形式geometry-dependent。当地之间的角度冲击正常的价值磁场的方向,θ_ (Bn),减少分布非常适合麦克斯韦。改变能量的光束在传播更高的值θ_ (Bn)。减少,导致小束速度高能尾的分布出现了。当尾巴,大部分的仍然是麦克斯韦分布。高能的尾巴很相关减少梁的速度(或等价θ_ (Bn))。角分布表明粒子分布的反面宣传重要的螺距角的磁场(不是field-aligned,里面的大部分)和分布这些角度都依赖资源。这些新的观测不符合任何生产预期的冲击或源于机制已知波粒相互作用或上游在激波层内。

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