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Thermal profiles in the auroral regions of JupiterThe temperature structure within the northern auroral region of Jupiter is studied by reanalyzing the Voyager 1/infrared interferometer and radiometer spectrometer (IRIS) spectra. The total measured excess infrared auroral zone emission (averaged over the IRIS field of view) in the hydrocarbon bands between 7 and 13 microns is found to be about 208 ergs/cm/s over an area of about 2 x 10(exp 18) sq cm with a resulting power output of 4 x 10(exp 13) W. In comparison, the total energy deposition by magnetospheric charged particles has been estimated on the basis of UV observations to range between 1 x 10(exp 13) and 4 x 10(exp 13) W over a comparable area. The large amount of radiated energy observed in the infrared may imply an additional heat source in the auroral regions (possibly Joule heating). A new set of thermal profiles of Jupiter's high-latitude upper atmosphere has also been derived. These profiles have a large temperature enhancement in the upper stratosphere and are constrained to reproduce the CH4 emission at 7.7 microns. The emission in the other hydrocarbon bands (C2H2 and C2H6) is found to depend on the depth to which the temperature enhancement extends, which further constrains the thermal profiles. This study shows that a large temperature enhancement in the upper stratosphere and lower thermosphere can explain the observed excess hydrocarbon emission bands; thus smaller variations in hydrocarbon abundances (between the high latitudes and the equatorial and middle latitudes) are required than has been assumed in previous models.
Document ID
19950045586
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Drossart, Pierre
(Observatoire de Paris-Meudon France)
Bezard, Bruno
(Observatoire de Paris-Meudon France)
Atreya, Sushil K.
(University of Michigan, Ann Arbor, MI United States)
Bishop, James
(University of Michigan, Ann Arbor, MI United States)
Waite, J. H., Jr.
(Southwest Research Institute, San Antonio, TX United States)
Boice, D.
(Southwest Research Institute, San Antonio, TX United States)
Date Acquired
August 16, 2013
Publication Date
October 25, 1993
Publication Information
Publication: Journal of Geophysical Research
Volume: 98
Issue: E10
ISSN: 0148-0227
Subject Category
Lunar And Planetary Exploration
Accession Number
95A77185
Distribution Limits
Public
Copyright
Other

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