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Ulysses Observations of the Properties of Multiple Ion Beams in the Solar Wind

机译:尤利西斯对太阳风中多离子梁的性能观察

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Properties of multiple ion beams in the solar wind beyond 1 AU as observed by the SWOOPS experiment on Ulysses are discussed. The solar wind proton distributions are approximated by a two beam bi-Maxwellian model. The slower outward traveling beam typically comprises the majority of the solar wind density. Differential streaming between the slower and faster proton beams decreases with distance from the Sun. The greatest difference between the beams in their evolution with distance from the Sun is that the parallel temperature component of the faster beam decreases more rapidly, r~(-1.22), than that of the slower beam, r~(-0.39). The difference in behavior for the perpendicular components (r~(0.46) for the faster beam and t-~(0.73) for the slower beam) is real but less marked. The indication that relative perpendicular cooling is less for the faster beam while relative parallel cooling is greater and differential beam speed decreases is generally consistent with expectations from a streaming instability between the two proton beams. We have observed a dependence of the temperature anisotropy of the faster proton beam on the drift speed of the faster beam with respect to the slower beam; for large drifts (about 1.6 V_A) the anisotropy, T_I/T_+, is smaller (about 0.8), whereas for slower drifts the parallel temperature is relatively hotter (anisotropy ratio of about 1.5).
机译:讨论了由副本在尤利索上观察到的太阳风中的多个离子梁的性质。太阳风质子分布由两个光束双最大威斯韦尔模型近似。较慢的向外行驶梁通常包括太阳风密度的大部分。较慢和更快的质子束之间的差分流减少,距离太阳的距离。与距离太阳距离的距离的梁之间的梁之间的最大差异是,更快的光束的并联温度分量比较慢的梁R〜(-0.39)更快地降低速度,R〜(-1.22)。对于更快的梁的垂直组分(R〜(0.46)的行为(R〜(0.46)的行为差异是真实的,但较少标记。相对垂直冷却对于更快的光束的指示较少,而相对平行冷却更大,并且差分光束速度降低通常与来自两个质子梁之间的流稳定性的期望一致。我们已经观察到更快的质子束的温度各向异性的依赖性相对于较慢的梁的更快光束的漂移速度;对于大漂移(约1.6V_A)各向异性,T_I / T_ +较小(约0.8),而对于较慢的漂移,并联温度相对较热(各向异性比为约1.5)。

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