Magnetic reconnection during steady magnetospheric convection and other magnetospheric modes

Author:

Hubert Benoit,Gérard Jean-ClaudeORCID,Milan Steve E.,Cowley Stanley W. H.ORCID

Abstract

Abstract. We use remote sensing of the proton aurora with the IMAGE-FUV SI12 (Imager for Magnetopause to Aurora Global Exploration–Far Ultraviolet–Spectrographic Imaging at 121.8 nm) instrument and radar measurements of the ionospheric convection from the SuperDARN (Super Dual Aurora Radar Network) facility to estimate the open magnetic flux in the Earth's magnetosphere and the reconnection rates at the dayside magnetopause and in the magnetotail during intervals of steady magnetospheric convection (SMC). We find that SMC intervals occur with relatively high open magnetic flux (average  ∼  0.745 GWb, standard deviation  ∼  0.16 GWb), which is often found to be nearly steady, when the magnetic flux opening and closure rates approximately balance around 55 kV on average, with a standard deviation of 21 kV. We find that the residence timescale of open magnetic flux, defined as the ratio between the open magnetospheric flux and the flux closure rate, is roughly 4 h during SMCs. Interestingly, this number is approximately what can be deduced from the discussion of the length of the tail published by Dungey (1965), assuming a solar wind speed of  ∼  450 km s−1. We also infer an enhanced convection velocity in the tail, driving open magnetic flux to the nightside reconnection site. We compare our results with previously published studies in order to identify different magnetospheric modes. These are ordered by increasing open magnetic flux and reconnection rate as quiet conditions, SMCs, substorms (with an important overlap between these last two) and sawtooth intervals.

Publisher

Copernicus GmbH

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geology,Astronomy and Astrophysics

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Exploring solar-terrestrial interactions via multiple imaging observers;Experimental Astronomy;2021-08-16

2. High Latitude Ionospheric Convection;Geophysical Monograph Series;2021-03-24

3. Magnetospheric Flux Throughput in the Dungey Cycle: Identification of Convection State During 2010;Journal of Geophysical Research: Space Physics;2021-02

4. Examining Local Time Variations in the Gains and Losses of Open Magnetic Flux During Substorms;Journal of Geophysical Research: Space Physics;2020-04

5. The Magnetosphere;Geomagnetism, Aeronomy and Space Weather;2019-11-14

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