INCREASES IN SCR ENERGETIC PROTON FLUXES ON EARTH AND THEIR RELATION TO SOLAR SOURCES

L. Lazutin
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引用次数: 1

Abstract

Logachev catalog data for solar cycle 23 has been used to study the dependence of measured increases in solar cosmic rays (SCRs) on solar perturbations. The efficiency of recording the SCR increases, driven by proton acceleration in the corona, on Earth and in its vicinity is shown to depend on power of a solar flare that created a shock wave and on position of the flare on the solar disk. As the particle flux moves along the heliolongitude away from the parent flare, the acceleration efficiency decreases, i.e. the maximum energy of the accelerated particles and their intensity at equal energy decrease. As a result, at a certain distance along a heliolongitude from the parent solar flare, the solar proton flux intensity decreases to the galactic background, and there is no SCR increase detected.
地球上SCR高能质子通量的增加及其与太阳源的关系
太阳周期23的Logachev星表数据被用于研究太阳宇宙射线(SCRs)测量的增加与太阳摄动的关系。在日冕、地球及其附近的质子加速的驱动下,记录SCR的效率增加,这取决于产生冲击波的太阳耀斑的功率和耀斑在太阳盘上的位置。当粒子通量沿日经度方向远离母耀斑时,加速效率降低,即加速粒子的最大能量及其在等能量下的强度降低。因此,在距离母太阳耀斑沿太阳经度一定距离处,太阳质子通量强度降低到银河系背景,没有检测到SCR增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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