Diamagnetic reduction in the magnetic field above a sunspot in the gamma-ray burst on July 14, 2000

被引:0
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作者
G. N. Kichigin
L. I. Miroshnichenko
V. I. Sidorov
S. A. Yazev
机构
[1] Russian Academy of Sciences,Institute of Solar–Terrestrial Physics, Siberian Branch
[2] Russian Academy of Sciences,Pushkov Institute of Terrestrial Magnetism, Ionosphere, and Radio Wave Propagation
[3] Moscow State University,Skobeltsyn Institute of Nuclear Physics
[4] Astronomic Observatory of Irkutsk State University,undefined
来源
Plasma Physics Reports | 2015年 / 41卷
关键词
Flare; Plasma Physic Report; Strong Magnetic Field; Solar Atmosphere; Lower Corona;
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学科分类号
摘要
Earlier, the authors proposed a model for describing the motion of trapped ions accelerated to energies of 10–100 MeV/nucleon in an electric field of 0.01–0.1 V/cm with a nonzero magnetic-field-aligned component in coronal solar loops with a characteristic size of ~100 000 km. The simulation results were used to interpret the properties of gamma-ray sources in a powerful solar burst that occurred on July 14, 2000. According to the proposed model, the gamma-ray source emitting lines with photon energies of 4.1–6.7 MeV was located above the sunspot and the source of the 2.223-MeV line coincided with the region of the observed drop-out of accelerated ions into dense layers of the solar atmosphere in the sunspot, where a short-term reduction in the photospheric magnetic field by about 100 G was simultaneously observed. An idea is stated and justified for the first time that the local reduction in the magnetic field in the sunspot is caused by the diamagnetic effect created by accelerated ions in the magnetic mirror of the coronal magnetic flux rope above the sunspot.
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页码:651 / 655
页数:4
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