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首页> 外文期刊>The Astrophysical journal >LOSS CONE PRECURSORS TO FORBUSH DECREASES AND ADVANCE WARNING OF SPACE WEATHER EFFECTS
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LOSS CONE PRECURSORS TO FORBUSH DECREASES AND ADVANCE WARNING OF SPACE WEATHER EFFECTS

机译:锥度损失的前兆损失和空间天气效应的提前警告

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摘要

Ground-based observations of cosmic rays by neutron monitors and muon detectors have found precursor anisotropies before the arrival of an interplanetary shock and subsequent Forbush decrease, possibly providing advance warning of space weather effects on shock impact at the Earth's magnetosphere. Surprisingly, muon detectors observe precursors with a greater lead time than neutron monitors. Here, we explain both loss cone and shock reflection precursors in a common mathematical framework and perform time-dependent numerical simulations of cosmic-ray transport near an oblique, planar shock. We examine parameters of loss cone precursors as a function of the shock-magnetic field angle and q, the spectral index of magnetic turbulence. More energetic particles correspond to a lower value of q and a higher value of λ, the interplanetary scattering mean free path. We conclude that loss cones should typically be detectable 4 hr prior to shock arrival at neutron monitor energies (~10 GeV) and 15 hr prior to shock arrival at muon detector energies (~30 GeV). In addition, the angular width of the loss cone provides a potential method of forecasting the shock-field angle, as the predicted width is substantially larger for quasi-parallel shocks than for quasi-perpendicular shocks, leading to a better indication of the shock arrival time.
机译:中子监测器和μ子探测器对宇宙射线的地面观测发现,在行星际激波到来之前,先兆各向异性已经发生,随后Forbush减小,这可能会提前警告太空天气对地球磁层冲击的影响。出乎意料的是,与中子监测器相比,μ子检测器观测到的前驱物的交货时间更长。在这里,我们在一个常见的数学框架中解释了损耗锥和冲击反射的前兆,并对倾斜的平面冲击附近的宇宙射线传输进行了时变的数值模拟。我们检查了损耗锥前体的参数与冲击磁场角和q(磁湍流的频谱指数)的关系。高能粒子对应于q的较低值和λ(行星际散射平均自由程)的较高值。我们得出的结论是,通常在中子监测器能量(〜10 GeV)到达冲击之前4小时和在μ子探测器能量(〜30 GeV)到达冲击之前15小时,可以检测到损耗锥。另外,损耗锥的角宽度提供了一种预测冲击场角的潜在方法,因为准平行冲击的预测宽度比准垂直冲击的预测宽度大得多,从而可以更好地指示冲击的到来时间。

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