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Solution to the Cosmic Ray Anisotropy Problem

机译:宇宙射线各向异性问题的解答

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In the standard diffusive picture for transport of cosmic rays (CRs), a gradient in the CR density induces a typically small, dipolar anisotropy in their arrival directions. This is being widely advertised as a tool for finding nearby sources. However, the predicted dipole amplitude at TeV and PeV energies exceeds the measured one by almost 2 orders of magnitude. Here, we critically examine the validity of this prediction, which is based on averaging over an ensemble of turbulent magnetic fields. We focus on (1) the deviations of the dipole in a particular random realization from the ensemble average, and (2) the possibility of a misalignment between the regular magnetic field and the CR gradient. We find that if the field direction and the gradient direction are close to ~90°, the dipole amplitude is considerably suppressed and can be reconciled with observations, which sheds light on a long-standing problem. Furthermore, we show that the dipole direction in general does not coincide with the gradient direction, thus hampering the search for nearby sources.
机译:在用于传输宇宙射线(CR)的标准扩散图片中,CR密度的梯度会在其到达方向上引起通常较小的偶极各向异性。这是广为宣传的寻找附近资源的工具。但是,在TeV和PeV能量下,预测的偶极子幅度比测得的偶极子幅度大了将近2个数量级。在这里,我们严格地检查此预测的有效性,该预测基于对湍流磁场整体的平均。我们关注于(1)特定随机实现中的偶极子与集合平均的偏差,以及(2)规则磁场与CR梯度之间未对准的可能性。我们发现,如果磁场方向和梯度方向接近〜90°,则偶极子幅度将被显着抑制,并且可以与观测值保持一致,这为一个长期存在的问题提供了启示。此外,我们表明,偶极子方向通常与梯度方向不一致,从而阻碍了对附近震源的搜索。

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