论文标题

内气球内的银河宇宙射线传播:改进的力场模型

Galactic Cosmic-Ray Propagation in the Inner Heliosphere: Improved Force-Field Model

论文作者

Li, Jung-Tsung, Beacom, John F., Peter, Annika H. G.

论文摘要

热物理学的一个关键目标是了解宇宙射线如何在太阳系复杂,动态的环境中传播。一个可观察到的是太阳调制,即宇宙射线向内传播时的通量和光谱如何变化。我们构建了改进的力场模型,利用Parker太阳能探针对磁力谱密度的新测量,以预测地球轨道内的太阳能调制。我们发现,至少在太阳平面和黄道平面上,地球和太阳之间的宇宙射线调节是适中的。与力场模型的过去处理相比,我们的结果与在地球轨道内宇宙射线径向梯度的有限数据一致。我们的预测可以通过Parker太阳能探针和太阳轨道在内部地球层中即将进行的直接宇宙射线测量进行测试。由于宇宙射线散布了太阳物质和光子,它们对于解释太阳的伽马射线发射也很重要。

A key goal of heliophysics is to understand how cosmic rays propagate in the solar system's complex, dynamic environment. One observable is solar modulation, i.e., how the flux and spectrum of cosmic rays changes as they propagate inward. We construct an improved force-field model, taking advantage of new measurements of magnetic power spectral density by Parker Solar Probe to predict solar modulation within the Earth's orbit. We find that modulation of cosmic rays between the Earth and Sun is modest, at least at solar minimum and in the ecliptic plane. Our results agree much better with the limited data on cosmic-ray radial gradients within Earth's orbit than past treatments of the force-field model. Our predictions can be tested with forthcoming direct cosmic-ray measurements in the inner heliosphere by Parker Solar Probe and Solar Orbiter. They are also important for interpreting the gamma-ray emission from the Sun due to scattering of cosmic rays with solar matter and photons.

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