Does magnetic storm generation depend on the solar wind type?
- Authors: Nikolaeva N.S.1, Yermolaev Y.I.1, Lodkina I.G.1, Yermolaev M.Y.1
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Affiliations:
- Space Research Institute
- Issue: Vol 57, No 5 (2017)
- Pages: 512-518
- Section: Article
- URL: https://journals.rcsi.science/0016-7932/article/view/156344
- DOI: https://doi.org/10.1134/S0016793217050152
- ID: 156344
Cite item
Abstract
The purpose of this work is to draw the reader’s attention to the problem of possible differences in the generation of magnetic storms by different large-scale solar wind types: corotating interaction regions (CIRs), Sheaths, and interplanetary coronal mass ejections (ICMEs), including magnetic clouds (MCs) and Ejecta. We recently showed that the description of relationships between interplanetary conditions and Dst and Dst* indices with the modified formula by Burton et al. gives an ~50% higher efficiency of storm generation by Sheath and CIR than that by ICME. Many function couplings (FCs) between different interplanetary parameters and the magnetosphere state have been suggested in the literature; however, they have not been analyzed for different solar wind types. In this work, we study the generation efficiency of the main phase of a storm by different solar wind streams with the use of 12 FCs on the basis of OMNI data for 1976–2000. The results show that the Sheath has the highest efficiency for most FCs, and MC is the least efficient, and this result corresponds to our previous results. The reliability of the results and possible causes of differences for different FCs and solar wind types are to be studied further.
About the authors
N. S. Nikolaeva
Space Research Institute
Email: yermol@iki.rssi.ru
Russian Federation, Moscow, 117997
Yu. I. Yermolaev
Space Research Institute
Author for correspondence.
Email: yermol@iki.rssi.ru
Russian Federation, Moscow, 117997
I. G. Lodkina
Space Research Institute
Email: yermol@iki.rssi.ru
Russian Federation, Moscow, 117997
M. Yu. Yermolaev
Space Research Institute
Email: yermol@iki.rssi.ru
Russian Federation, Moscow, 117997
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