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The inner heliosphere - Outer heliosphere comparison for cosmic ray modulation

机译:内太阳圈-外太阳圈比较宇宙射线调制

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This paper summarizes cosmic ray data on both galactic and anomalous particles in the inner and outer heliosphere near the sunspot minimum in 1995 and 1996 at the end of solar cycle 22. These data come from the IMP spacecraft in the inner heliosphere and the Voyager and Pioneer spacecraft in the outer heliosphere. In the inner heliosphere, the cosmic ray intensities at all energies in 1996 have recovered to almost the same maximum values they had at the last sunspot minimum in 1987 and the intensities are an even closer match to those observed two 11-year cycles earlier in 1976. In the outer heliosphere beyond 40 AU the intensity recovery is very slow and the intensities at all energies and for all species are almost constant in 1995-96 indicating that little further recovery can be expected in this cycle. The intensity of galactic cosmic rays in 1996 is only similar to 0.3-0.5 of that observed at the same radius of 42 AU in 1987 and for anomalous cosmic rays this ratio is only 0.1-0.2. This suggests a dramatically different entry of particles into the heliosphere in the two cycles for both types of particles as well as significantly different particle flow characteristics in the outer heliosphere. The net result of these different characteristics is that near the Earth only a relatively small intensity difference is observed between successive 11-year solar cycles whereas in the outer heliosphere the differences between cycles become very large and may even dominate the overall modulation. [References: 8]
机译:本文总结了太阳周期22结束时1995年和1996年太阳黑子最低点附近的内,外太阳圈中银河和异常粒子的宇宙射线数据。这些数据来自内太阳圈中的IMP航天器以及Voyager和Pioneer外太阳圈中的航天器。在内部太阳圈,1996年所有能量的宇宙射线强度已恢复到几乎与1987年最后一个黑子最低点相同的最大值,并且该强度与1976年初的两个11年周期所观测到的强度更加接近。在超过40 AU的外太阳圈,强度恢复非常缓慢,所有能量和所有物种的强度在1995-96年几乎保持恒定,这表明在此循环中几乎没有进一步的恢复。 1996年的银河系宇宙射线强度仅与1987年在相同半径42 AU处观测到的强度相当,为0.3-0.5,而对于异常的宇宙射线,该比率仅为0.1-0.2。这表明对于两种类型的粒子,在两个循环中粒子进入太阳圈的方式截然不同,并且在外部太阳圈中的粒子流动特性也明显不同。这些不同特征的最终结果是,在连续11年的太阳周期之间,仅在地球附近观测到相对较小的强度差异,而在外太阳圈,周期之间的差异变得非常大,甚至可能主导整个调制。 [参考:8]

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