CrossRef Open Access 2020 136 sitasi

A Jovian Magnetodisc Model for the Juno Era

J. E. P. Connerney S. Timmins M. Herceg J. L. Joergensen

Abstrak

AbstractThe Jovian magnetosphere assumes a disc‐like geometrical configuration (“magnetodisc”) owing to the persistent presence of a system of azimuthal currents circulating in a washer‐shaped volume aligned with, or near, the magnetic equatorial plane. A Voyager era empirical model of the magnetodisc is fitted to vector magnetic field measurements obtained during the Juno spacecraft's first 24 orbits. The best fitting (within 30 Jovian radii) magnetodisc model is characterized by an inner and outer radius of 7.8 and 51.4 Jovian radii, a half‐thickness of 3.6 Jovian radii, with a surface normal at 9.3° from the Jovigraphic pole and 204.2° System 3 west longitude. We supplement the magnetodisc model with a second current system, also confined to the magnetic equatorial plane, consisting of outward radial currents that presumably effect the transfer of angular momentum to outward flowing plasma. Allowing for variation of the magnetodisc's azimuthal and radial current systems from one 53‐day orbit to the next, we develop an index of magnetospheric activity that may be useful in interpretation of variations in auroral observations.

Penulis (4)

J

J. E. P. Connerney

S

S. Timmins

M

M. Herceg

J

J. L. Joergensen

Format Sitasi

Connerney, J.E.P., Timmins, S., Herceg, M., Joergensen, J.L. (2020). A Jovian Magnetodisc Model for the Juno Era. https://doi.org/10.1029/2020ja028138

Akses Cepat

Lihat di Sumber doi.org/10.1029/2020ja028138
Informasi Jurnal
Tahun Terbit
2020
Bahasa
en
Total Sitasi
136×
Sumber Database
CrossRef
DOI
10.1029/2020ja028138
Akses
Open Access ✓