The origin of Jupiter's outer radiation belt

被引:58
作者
Woodfield, E. E. [1 ]
Horne, R. B. [1 ]
Glauert, S. A. [1 ]
Menietti, J. D. [2 ]
Shprits, Y. Y. [3 ,4 ,5 ]
机构
[1] British Antarctic Survey, Cambridge CB3 0ET, England
[2] Univ Iowa, Dept Phys & Astron, Iowa City, IA 52242 USA
[3] Skolkovo Inst Sci & Technol, Moscow, Russia
[4] MIT, Cambridge, MA 02139 USA
[5] Univ Calif Los Angeles, Los Angeles, CA USA
关键词
Jupiter; radiation belts; electron acceleration; gyroresonant interactions; chorus waves; ELECTRON ACCELERATION; SYNCHROTRON-RADIATION; ENERGETIC ELECTRONS; RELATIVISTIC ELECTRONS; RESONANT INTERACTION; DIFFUSION-MODELS; INNER; CHORUS; IO; MAGNETOSPHERE;
D O I
10.1002/2014JA019891
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The intense inner radiation belt at Jupiter (>50 MeV at 1.5 RJ) is generally accepted to be created by radial diffusion of electrons from further away from the planet. However, this requires a source with energies that exceed 1 MeV outside the orbit of the moon Io at 5.9 RJ, which has never been explained satisfactorily. Here we test the hypothesis that this source population could be formed from a very soft energy spectrum, by particle injection processes and resonant electron acceleration via whistler mode chorus waves. We use the British Antarctic Survey Radiation Belt Model to calculate the change in the electron flux between 6.5 and 15 RJ; these are the first simulations at Jupiter combining wave particle interactions and radial diffusion. The resulting electron flux at 100 keV and 1 MeV lies very close to the Galileo Interim Radiation Electron model spectrum after 1 and 10 days, respectively. The primary driver for the increase in the flux is cyclotron resonant acceleration by chorus waves. A peak in phase space density forms such that inside L approximate to 9 radial diffusion transports electrons toward Jupiter, but outside L approximate to 9 radial diffusion acts away from the planet. The results are insensitive to the softness of the initial energy spectrum but do depend on the value of the flux at the minimum energy boundary. We conclude by suggesting that the source population for the inner radiation belt at Jupiter could indeed be formed by wave-particle interactions.
引用
收藏
页码:3490 / 3502
页数:13
相关论文
共 57 条
  • [1] Electron scattering loss in earth's inner magnetosphere - 1. Dominant physical processes
    Abel, B
    Thorne, RM
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1998, 103 (A2) : 2385 - 2396
  • [2] Diffusion by one wave and by many waves
    Albert, J. M.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2010, 115
  • [3] Three-dimensional diffusion simulation of outer radiation belt electrons during the 9 October 1990 magnetic storm
    Albert, Jay M.
    Meredith, Nigel P.
    Horne, Richard B.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2009, 114
  • [4] Storm-induced energization of radiation belt electrons: Effect of wave obliquity
    Artemyev, A. V.
    Agapitov, O. V.
    Mourenas, D.
    Krasnoselskikh, V.
    Zelenyi, L. M.
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2013, 40 (16) : 4138 - 4143
  • [5] EMPIRICAL-MODEL OF THE IO PLASMA TORUS - VOYAGER MEASUREMENTS
    BAGENAL, F
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1994, 99 (A6) : 11043 - 11062
  • [6] Berge G.L., 1976, JUPITER STUDIES INTE, P621
  • [7] Ultra-relativistic electrons in Jupiter's radiation belts
    Bolton, SJ
    Janssen, M
    Thorne, R
    Levin, S
    Klein, M
    Gulkis, S
    Bastian, T
    Sault, R
    Elachi, C
    Hofstadter, M
    Bunker, A
    Dulk, G
    Gudim, E
    Hamilton, G
    Johnson, WTK
    Leblanc, Y
    Liepack, O
    McLeod, R
    Roller, J
    Roth, L
    West, R
    [J]. NATURE, 2002, 415 (6875) : 987 - 991
  • [8] Radial diffusion analysis of outer radiation belt electrons during the October 9, 1990, magnetic storm
    Brautigam, DH
    Albert, JM
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2000, 105 (A1) : 291 - 309
  • [9] JUPITERS RADIATION BELTS
    BRICE, N
    MCDONOUGH, TR
    [J]. ICARUS, 1973, 18 (02) : 206 - 219
  • [10] The energization of relativistic electrons in the outer Van Allen radiation belt
    Chen, Yue
    Reeves, Geoffrey D.
    Friedel, Reiner H. W.
    [J]. NATURE PHYSICS, 2007, 3 (09) : 614 - 617