HR: 17:15h
AN: P44A-06 [Abstracts]
TI: Cassini RPWS Observations of Saturn Lightning
AU: * Desch, M
EM: michael.desch@nasa.gov
AF: NASA/Goddard Space Flight Center, code 695, Greenbelt, MD 20770
United States
AU: Kaiser, M
EM: michael.kaiser@nasa.gov
AF: NASA/Goddard Space Flight Center, code 695, Greenbelt, MD 20770
United States
AU: Farrell, W
EM: william.farrell@nasa.gov
AF: NASA/Goddard Space Flight Center, code 695, Greenbelt, MD 20770
United States
AU: Kurth, W
EM: wsk@space.physics.uiowa.edu
AF: University of Iowa, Dept Physics and Astronomy, Iowa City, IA 52242
United States
AU: Gurnett, D
EM: dag@space.physics.uiowa.edu
AF: University of Iowa, Dept Physics and Astronomy, Iowa City, IA 52242
United States
AU: Zarka, P
EM: phillipe.zarka@obspm.fr
AF: Observatoire de Paris, 5 Place Jules Janssen, Meudon, 92190
France
AU: Lecacheux, A
EM: alain.lecacheux@obspm.fr
AF: Observatoire de Paris, 5 Place Jules Janssen, Meudon, 92190
France
AU: Fischer, G
EM: georg.fischer@oeaw.ac.at
AF: Austrian Academy of Sciences, Scsmiedlstrasse 6, Graz, 8042
Austria
AU: Porco, C
EM: carolyn@ciclops.org
AF: Space Science Institute, 4750 Walnut St, Bouulder, CO 80301
United States
AU: Ingersoll, A
EM: api@gps.caltech.edu
AF: California Institute of Technology, 1200 E. California Blvd, Pasadena, CA 91125
United States
AB:
The Radio and Plasma Wave (RPWS) instrument on Cassini began observing Saturn Electrostatic Discharges (SED) on a routine
basis on 13 July, shortly after closest approach to the planet. SED, first discovered by the Planetary Radio Astronomy
instrument on Voyager, are widely believed to be the radio signature of lightning discharges in the atmosphere of Saturn.
The radio signatures appear very similar to the dayside signatures observed over 20 years ago by Voyager in that the
frequency range extends from about 1 MHz to the highest receiver frequency (~16 MHz), and the individual bursts are of short
(10's of msec) duration. However, the Cassini observations differ in important ways: (1) the lightning is generally weaker
in intensity, (2) the period of reoccurrence of the storms (~10.24 - 10.75 hr) is decidedly longer than that observed by
Voyager (~10.1 hr), and (3) the lightning storms, lasting from minutes to hours, now occur episodically, rather than
repeatedly on every rotation. This last point is underscored by the fact that a possible SED storm of great intensity was
observed over a year before closest approach in July, 2003.
As of this writing, RPWS continues to detect SED. Since 13 July, 40 well-defined episodes, or storms, have been observed,
corresponding to a storm occurrence rate of about 40 percent. Careful tracking of the storm phase relative to the planet's
rotation has revealed that two probably separate and distinct storm systems have developed since 13 July. The first, lasting
from 13 July (or before) until 27 July, reappeared with a period of 10 hr 45 min with highly predictable start times,
apparently corresponding to the emergence of the storm over the nightside limb of the planet. The storm waxed and waned in
intensity, sometimes disappearing for many rotations, but always reappearing in phase. The second system appeared on 30
July, and has been observed on and off to date. This second system has reoccurred with a period of about 10hr 15min.
Presumably the storm periodicity can be related to a particular latitude on Saturn where the measured wind speed in the
atmosphere gives the appropriate period of rotation. Attempts to associate SED storms with particular atmospheric features
are continuing.
DE: 6275 Saturn
DE: 6954 Radio astronomy
DE: 3324 Lightning
SC: Planetary Sciences [P]
MN: 2004 AGU Fall Meeting