MESSENGER observations of a flux‐transfer‐event shower at Mercury
Author(s) -
Slavin James A.,
Imber Suzanne M.,
Boardsen Scott A.,
DiBraccio Gina A.,
Sundberg Torbjorn,
Sarantos Menelaos,
NievesChinchilla Teresa,
Szabo Adam,
Anderson Brian J.,
Korth Haje,
Zurbuchen Thomas H.,
Raines Jim M.,
Johnson Catherine L.,
Winslow Reka M.,
Killen Rosemary M.,
McNutt Ralph L.,
Solomon Sean C.
Publication year - 2012
Publication title -
journal of geophysical research: space physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.67
H-Index - 298
eISSN - 2156-2202
pISSN - 0148-0227
DOI - 10.1029/2012ja017926
Subject(s) - magnetosheath , physics , magnetopause , astrophysics , flux (metallurgy) , magnetic field , interplanetary magnetic field , diamagnetism , magnetic flux , magnetosphere , solar wind , geophysics , chemistry , quantum mechanics , organic chemistry
Analysis of MESSENGER magnetic field observations taken in the southern lobe of Mercury's magnetotail and the adjacent magnetosheath on 11 April 2011 indicates that a total of 163 flux transfer events (FTEs) occurred within a 25 min interval. Each FTE had a duration of ∼2–3 s and was separated in time from the next by ∼8–10 s. A range of values have been reported at Earth, with mean values near ∼1–2 min and ∼8 min, respectively. We term these intervals of quasiperiodic flux transfer events “FTE showers.” The northward and sunward orientation of the interplanetary magnetic field during this shower strongly suggests that the FTEs observed during this event formed just tailward of Mercury's southern magnetic cusp. The point of origin for the shower was confirmed with the Cooling model of FTE motion. Modeling of the individual FTE‐type flux ropes in the magnetosheath indicates that these flux ropes had elliptical cross sections, a mean semimajor axis of 0.15 R M (where R M is Mercury's radius, or 2440 km), and a mean axial magnetic flux of 1.25 MWb. The lobe magnetic field was relatively constant until the onset of the FTE shower, but thereafter the field magnitude decreased steadily until the spacecraft crossed the magnetopause. This decrease in magnetic field intensity is frequently observed during FTE showers. Such a decrease may be due to the diamagnetism of the new magnetosheath plasma being injected into the tail by the FTEs.
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