English

Relations between strong high-frequency microwave bursts and proton events

Solar and Stellar Astrophysics 2015-06-16 v1

Abstract

Proceeding from close association between solar eruptions, flares, shock waves, and CMEs, we analyze relations between bursts at 35 GHz recorded with the Nobeyama Radio Polarimeters during 1990-2012, on the one hand, and solar energetic particle (SEP) events, on the other hand. Most west to moderately east solar events with strong bursts at 35 GHz produced near-Earth proton enhancements of J(E > 100 MeV) > 1 pfu. The strongest and hardest those caused ground level enhancements. There is a general, although scattered, correspondence between proton enhancements and peak fluxes at 35 GHz, especially pronounced if the 35 GHz flux exceeds 10^4 sfu and the microwave peak frequency is high. These properties indicate emission from numerous high-energy electrons in very strong magnetic fields suggesting a high rate of energy release in the flare-CME formation process. Flaring above the sunspot umbrae appears to be typical of such events. Irrespective of the origin of SEPs, these circumstances demonstrate significant diagnostic potential of high-frequency microwave bursts and sunspot-associated flares for space weather forecasting. Strong prolonged bursts at 35 GHz promptly alert to hazardous SEP events with hard spectra. A few exceptional events with moderate bursts at 35 GHz and strong proton fluxes look challenging and should be investigated.

Keywords

Cite

@article{arxiv.1308.2275,
  title  = {Relations between strong high-frequency microwave bursts and proton events},
  author = {V. Grechnev and N. Meshalkina and I. Chertok and V. Kiselev},
  journal= {arXiv preprint arXiv:1308.2275},
  year   = {2015}
}

Comments

14 pages, 8 figures, 1 table. Accepted for publication in PASJ

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