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首页> 外文期刊>The Astrophysical journal >ROLE OF THE SUN'S NONAXISYMMETRIC OPEN FLUX IN COSMIC-RAY MODULATION
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ROLE OF THE SUN'S NONAXISYMMETRIC OPEN FLUX IN COSMIC-RAY MODULATION

机译:太阳的非对称对称开放通量在宇宙射线调制中的作用

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We reexamine the empirical relationship between the Sun's open magnetic flux and the cosmic-ray (CR) intensity over the solar cycle. The single parameter that correlates best with the inverted CR rate is found to be the non-axisymmetric or longitudinally varying component of the total open flux, rather than the sunspot number or the rate of coronal mass ejections (CMEs). The nonaxisymmetric open flux in turn tracks the evolution of the Sun's equatorial dipole component, which is a function of both the strength and the longitudinal distribution of sunspot activity. Yearlong peaks in the equatorial dipole strength coincide with steplike decreases in the CR intensity and with the formation of global merged interaction regions (GMIRs) in the outer heliosphere. During these periods, nonaxisymmetric open flux (in the form of low-latitude coronal holes) is created through the organized emergence of large active regions, resulting in the global injection of magnetic energy into the heliosphere. At the same time, strengthenings of the equatorial dipole are generally accompanied by large increases in the number of fast CMEs. Rotationally induced, compressional interactions between the nonaxisymmetric open flux, fast CMEs, and high-speed streams then give rise to outward-propagating diffusive barriers that extend over all longitudes and to a latitude (approx> 45°) again determined by the equatorial dipole strength.
机译:我们重新检查了太阳周期中太阳的开放磁通量与宇宙射线(CR)强度之间的经验关系。发现与反向CR率最相关的单个参数是总开放通量的非轴对称或纵向变化分量,而不是黑子数或日冕物质抛射率(CME)。非轴对称的开放通量又跟踪太阳赤道偶极子分量的演变,这是太阳黑子活动强度和纵向分布的函数。赤道偶极子强度的为期一年的峰值与CR强度的阶梯式下降以及在外太阳圈中形成的全球合并相互作用区域(GMIR)相吻合。在这些时期,通过有组织的大型活动区域的出现,产生了非轴对称的开放通量(以低纬度冠状孔的形式),从而将磁能整体注入了日光层。同时,赤道偶极子的增强通常伴随着快速CME数量的大量增加。然后,非轴对称开放通量,快速CME和高速流之间的旋转诱发的压缩相互作用会产生向外传播的扩散势垒,该势垒在所有经度和纬度(约45°)以上均由赤道偶极子强度确定。

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