Journal article
Juno‐UVS approach observations of Jupiter's auroras
Geophysical research letters, Vol.44(15), pp.7668-7675
08/16/2017
DOI: 10.1002/2017GL073377
PMCID: PMC5606505
PMID: 28989207
Abstract
Juno ultraviolet spectrograph (UVS) observations of Jupiter's aurora obtained during approach are presented. Prior to the bow shock crossing on 24 June 2016, the Juno approach provided a rare opportunity to correlate local solar wind conditions with Jovian auroral emissions. Some of Jupiter's auroral emissions are expected to be controlled or modified by local solar wind conditions. Here we compare synoptic Juno‐UVS observations of Jupiter's auroral emissions, acquired during 3–29 June 2016, with in situ solar wind observations, and related Jupiter observations from Earth. Four large auroral brightening events are evident in the synoptic data, in which the total emitted auroral power increases by a factor of 3–4 for a few hours. Only one of these brightening events correlates well with large transient increases in solar wind ram pressure. The brightening events which are not associated with the solar wind generally have a risetime of ~2 h and a decay time of ~5 h.
Plain Language Summary
Juno ultraviolet spectrograph (UVS) observations of Jupiter's aurora obtained during approach are presented. Jupiter's auroras are thought to be controlled in part by the solar wind, a stream of charged particles flowing outward from the Sun. The Juno approach was a rare opportunity to compare solar wind conditions near Jupiter with the Jovian ultraviolet aurora, using observations made during June 2016. Although Jupiter's aurora is always present, four brightening events were seen in the data, in which the total auroral power increased to several times the typical level for a few hours. Only one of these brightening events appears well connected with solar wind activity. The brightening events which are not associated with the solar wind all increase in brightness in about 2 h and then dim back down again in about another 5 h.
Key Points
Jupiter's aurora and the solar wind have a complex relationship
The single solar wind structure that correlated with an auroral brightening event was a CIR
Auroral brightening events which are not related to solar wind conditions have a similar time evolution
Details
- Title: Subtitle
- Juno‐UVS approach observations of Jupiter's auroras
- Creators
- G. R. Gladstone - Southwest Research InstituteM. H. Versteeg - Southwest Research InstituteT. K. Greathouse - Southwest Research InstituteV. Hue - Southwest Research InstituteM. W. Davis - Southwest Research InstituteJ.‐C. Gérard - Université de LiègeD. C. Grodent - University of LiègeB. Bonfond - University of LiègeJ. D. Nichols - University of LeicesterR. J. Wilson - Laboratory for Atmospheric and Space PhysicsG. B. Hospodarsky - University of IowaS. J. Bolton - Southwest Research InstituteS. M. Levin - Jet Propulsion LaboratoryJ. E. P. Connerney - Goddard Space Flight CenterA. Adriani - Institute for Space Astrophysics and PlanetologyW. S. Kurth - University of IowaB. H. Mauk - Johns Hopkins University Applied Physics LaboratoryP. Valek - Southwest Research InstituteD. J. McComas - Princeton UniversityG. S. Orton - Jet Propulsion LaboratoryF. Bagenal - Laboratory for Atmospheric and Space Physics
- Resource Type
- Journal article
- Publication Details
- Geophysical research letters, Vol.44(15), pp.7668-7675
- DOI
- 10.1002/2017GL073377
- PMID
- 28989207
- PMCID
- PMC5606505
- NLM abbreviation
- Geophys Res Lett
- ISSN
- 0094-8276
- eISSN
- 1944-8007
- Number of pages
- 8
- Grant note
- National Aeronautics and Space Administration ESA National Aeronautics and Space Administration (NNM06AA75C)
- Language
- English
- Date published
- 08/16/2017
- Academic Unit
- Physics and Astronomy; University College Courses
- Record Identifier
- 9984455657402771
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