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Dynamics, evolution, and structure of Uranus' brightest cloud feature
Authors:LA Sromovsky  PM Fry  HB Hammel  I de Pater  KA Rages  MR Showalter
Institution:aSpace Science and Engineering Center, University of Wisconsin, 1225 W. Dayton Street, Madison, WI 53706, USA;bSpace Science Institute, 4750 Walnut Street, Suite 205, Boulder, CO 80303, USA;cAstronomy Department, 601 Campbell Hall, University of California, Berkeley, CA 94720-3411, USA;dSETI Institute, 515 N Whisman Road, Mountain View, CA 94043, USA
Abstract:The brightest cloud feature ever observed on Uranus at near-infrared wavelengths was detected on 14 and 15 August 2005, in images obtained with the NIRC2 instrument and adaptive optics (AO) at the 10-m Keck II telescope. The feature has been tracked forward and backward in time, and appears to have existed almost certainly from 5 November 2004 (possibly as early as 11 July 2004) through 29 October 2005. It appears to exhibit two modes of oscillation in latitude and longitude. The slow oscillation period is too long to be completely characterized by the observations; its period is most likely near 448 days, but might be as long as 753 days. The slow oscillation is consistent with the zonal mean wind profile when a superimposed more rapid oscillation is accounted for. The slow oscillation, possibly associated with a Rossby wave, was centered at 30.2° N and had a latitude amplitude of 0.6°–0.7°. Its rapid oscillation had an amplitude of not, vert, similar1.2° in latitude and a likely period near 0.68455 days, which is consistent with an inertial oscillation at the observed latitude. The multi-component structure of the bright features has evolved over time, as has its vertical structure. Its brightness maximum was due to a combination of cloud particles being lofted to higher altitudes, some rising from 400–500 to 300 mb, and by its effective cloud fraction (or equivalent cloud area) increasing by a factor of 5 or more. In the K′ band (2.2 μm) the differential integrated brightness due to this bright complex increased to 13% of the total light reflected by Uranus on 15 August 2005, rising from about 2% a month earlier and declining to 0.7% two months later. It has not been seen in 2006 observations.
Keywords:Uranus  Uranus  atmosphere
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