Literature DB >> 11875560

Ultraviolet emissions from the magnetic footprints of Io, Ganymede and Europa on Jupiter.

J T Clarke1, J Ajello, G Ballester, L Ben Jaffel, J Connerney, J-C Gérard, G R Gladstone, D Grodent, W Pryor, J Trauger, J H Waite.   

Abstract

Io leaves a magnetic footprint on Jupiter's upper atmosphere that appears as a spot of ultraviolet emission that remains fixed underneath Io as Jupiter rotates. The specific physical mechanisms responsible for generating those emissions are not well understood, but in general the spot seems to arise because of an electromagnetic interaction between Jupiter's magnetic field and the plasma surrounding Io, driving currents of around 1 million amperes down through Jupiter's ionosphere. The other galilean satellites may also leave footprints, and the presence or absence of such footprints should illuminate the underlying physical mechanism by revealing the strengths of the currents linking the satellites to Jupiter. Here we report persistent, faint, far-ultraviolet emission from the jovian footprints of Ganymede and Europa. We also show that Io's magnetic footprint extends well beyond the immediate vicinity of Io's flux-tube interaction with Jupiter, and much farther than predicted theoretically; the emission persists for several hours downstream. We infer from these data that Ganymede and Europa have persistent interactions with Jupiter's magnetic field despite their thin atmospheres.

Year:  2002        PMID: 11875560     DOI: 10.1038/415997a

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  1 in total

1.  The auroral footprint of Enceladus on Saturn.

Authors:  Wayne R Pryor; Abigail M Rymer; Donald G Mitchell; Thomas W Hill; David T Young; Joachim Saur; Geraint H Jones; Sven Jacobsen; Stan W H Cowley; Barry H Mauk; Andrew J Coates; Jacques Gustin; Denis Grodent; Jean-Claude Gérard; Laurent Lamy; Jonathan D Nichols; Stamatios M Krimigis; Larry W Esposito; Michele K Dougherty; Alain J Jouchoux; A Ian F Stewart; William E McClintock; Gregory M Holsclaw; Joseph M Ajello; Joshua E Colwell; Amanda R Hendrix; Frank J Crary; John T Clarke; Xiaoyan Zhou
Journal:  Nature       Date:  2011-04-21       Impact factor: 49.962

  1 in total

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