The Structure of Mercury's Magnetic Field from MESSENGER's First Flyby

Author:

Anderson Brian J.12345,Acuña Mario H.12345,Korth Haje12345,Purucker Michael E.12345,Johnson Catherine L.12345,Slavin James A.12345,Solomon Sean C.12345,McNutt Ralph L.12345

Affiliation:

1. Johns Hopkins University Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, MD 20723, USA.

2. Solar System Exploration Division, NASA Goddard Space Fight Center, Greenbelt, MD 20771, USA.

3. Department of Earth and Ocean Sciences, University of British Columbia, Vancouver, BC V6T 1Z4, Canada.

4. Heliophysics Science Division, NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA.

5. Department of Terrestrial Magnetism, Carnegie Institution of Washington, Washington, DC 20015, USA.

Abstract

During its first flyby of Mercury, the MESSENGER spacecraft measured the planet's near-equatorial magnetic field. The field strength is consistent to within an estimated uncertainty of 10% with that observed near the equator by Mariner 10. Centered dipole solutions yield a southward planetary moment of 230 to 290 nanotesla R M 3 (where R M is Mercury's mean radius) tilted between 5° and 12° from the rotation axis. Multipole solutions yield non-dipolar contributions of 22% to 52% of the dipole field magnitude. Magnetopause and tail currents account for part of the high-order field, and plasma pressure effects may explain the remainder, so that a pure centered dipole cannot be ruled out.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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