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Power spectral signatures of interplanetary corotating and transient flows

机译:行星际同向和瞬变流的功率谱特征

摘要

Studies of the time behavior of the galactic cosmic ray intensity have concluded that long term decreases in the intensity are generally associated with systems of interplanetary flows that contain flare generated shock waves, magnetic clouds and other transient phenomena. The magnetic field power spectral signatures of such flow systems are compared to power spectra obtained during times when the solar wind is dominated by stable corotating streams that do not usually produce long-lived reduction in the cosmic ray intensity. The spectral signatures of these two types of regimes (transient and corotating) are distinct. However, the distinguishing features are not the same throughout the heliosphere. In data collected beyond 1 AU the primary differences are in the power spectra of the magnitude of the magnetic field rather than in the power in the field components. Consequently, decreases in cosmic ray intensity are very likely due to magnetic mirror forces and gradient drifts rather than to small angle scattering due to cyclotron wave-particle interactions.
机译:对银河系宇宙射线强度的时间行为的研究得出结论,强度的长期下降通常与行星际流系统有关,这些系统包含耀斑产生的冲击波,磁云和其他瞬态现象。将这种流动系统的磁场功率谱特征与在稳定的同向气流控制太阳风时获得的功率谱进行比较,该同向气流通常不会使宇宙射线强度长期降低。这两种类型的模式(瞬态和同向旋转)的光谱特征是不同的。但是,在整个太阳圈中,其区别特征并不相同。在超过1 AU收集的数据中,主要差异在于磁场强度的功率谱,而不是磁场分量的功率。因此,宇宙射线强度的降低很可能是由于磁镜力和梯度漂移所致,而不是由于回旋加速器波粒相互作用引起的小角度散射。

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