Effect of Corotating Interaction Regions of Solar Wind on GCR Intensity in 2D Modulation Problems

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
M. S. Kalinin, M. B. Krainev, X. Luo, M. S. Podgieter
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引用次数: 0

Abstract

Сorotating interaction regions of solar wind flows with different velocities have actively been magnetohydrodynamically simulated for many years. However, the main goal is to predict heliospheric characteristics in Earth’s orbit, and so calculations are performed to distances of 1–1.5 AU. In the last decade, systematic magnetohydrodynamic calculations of corotating interaction regions up to much larger distances have appeared, which are necessary for studying recurrent variations in the intensity of galactic cosmic rays. Based on one of these calculations, we previously showed that, at least for one rotation of the Sun (Carrington rotation 2066, January–February 2008), the effect of corotating interaction regions on large-scale characteristics of the heliosphere that are important for GCR modulation and, therefore, the intensity averaged over longitude is significant. We assumed that the main principles of this effect of corotating interaction regions on GCRs can be studied both by 3D modeling of the GCR intensity and in much simpler 2D models. In this paper, we discuss the results, prospects, and shortcomings of such a 2D description of the effect of corotating interaction regions on the GCR intensity.

Abstract Image

二维调制问题中太阳风旋转相互作用区对GCR强度的影响
Сorotating不同速度太阳风流的相互作用区域已经被积极地进行了多年的磁流体动力学模拟。然而,主要目标是预测地球轨道上的日球层特征,因此计算的距离是1-1.5天文单位。在过去的十年中,出现了对更大距离的旋转相互作用区域的系统磁流体力学计算,这对于研究银河系宇宙射线强度的周期性变化是必要的。基于其中一个计算,我们先前表明,至少对于太阳的一次旋转(Carrington rotation 2066, 2008年1月至2月),旋转相互作用区域对日球层大尺度特征的影响对GCR调制很重要,因此,在经度上的平均强度是显著的。我们假设旋转相互作用区域对GCR影响的主要原理可以通过GCR强度的3D模型和更简单的2D模型来研究。在本文中,我们讨论了这种二维描述旋转相互作用区域对GCR强度影响的结果、前景和不足。
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来源期刊
Geomagnetism and Aeronomy
Geomagnetism and Aeronomy Earth and Planetary Sciences-Space and Planetary Science
CiteScore
1.30
自引率
33.30%
发文量
65
审稿时长
4-8 weeks
期刊介绍: Geomagnetism and Aeronomy is a bimonthly periodical that covers the fields of interplanetary space; geoeffective solar events; the magnetosphere; the ionosphere; the upper and middle atmosphere; the action of solar variability and activity on atmospheric parameters and climate; the main magnetic field and its secular variations, excursion, and inversion; and other related topics.
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