Astronomy and Astrophysics – Astronomy
Scientific paper
Oct 2009
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2009georl..3620202y&link_type=abstract
Geophysical Research Letters, Volume 36, Issue 20, CiteID L20202
Astronomy and Astrophysics
Astronomy
7
Planetary Sciences: Fluid Planets: Magnetic Fields And Magnetism, Planetary Sciences: Solar System Objects: Jupiter, Planetary Sciences: Fluid Planets: Interiors (8147), Planetary Sciences: Fluid Planets: Orbital And Rotational Dynamics (1221)
Scientific paper
To determine the Jovian internal rotation rate, historically one has used the repetition period (periodicity) of decametric and decimetric radio waves. The period with which decametric and decimetric radio waves recur on Jupiter (the System III period) was defined by the IAU in 1965 to be 9h 55m 29.71s, based on early radio astronomical data. A more direct way to determine this period is to examine the rotation rate of the dipole field. We have done this using Galileo, Pioneer 10 and 11, Voyager 1 and 2, and Ulysses data over a 25-year period. We find a small drift in the apparent longitude of the dipole axis that is statistically significant, consistent with there being a small error in the original IAU period, one within the error expected in the defined period. The newly derived period is 9h 55m 29.704 ± 0.003s, 6ms shorter than the 1965 IAU definition, and inconsistent with the value of 9h 55m 29.685s proposed by Higgins et al. (1997).
Russell Christopher T.
Yu Z. J.
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