Cassini Imaging of Saturn's Rings II: A Wavelet Technique for Analysis of Density Waves and Other Radial Structure in the Rings
arXiv:astro-ph/0610242 · doi:10.1016/j.icarus.2006.12.025
Abstract
We describe a powerful signal processing method, the continuous wavelet transform, and use it to analyze radial structure in Cassini ISS images of Saturn's rings. Wavelet analysis locally separates signal components in frequency space, causing many structures to become evident that are difficult to observe with the naked eye. Density waves, generated at resonances with saturnian satellites orbiting outside (or within) the rings, are particularly amenable to such analysis. We identify a number of previously unobserved weak waves, and demonstrate the wavelet transform's ability to isolate multiple waves superimposed on top of one another. We also present two wave-like structures that we are unable to conclusively identify. In a multi-step semi-automated process, we recover four parameters from clearly observed weak spiral density waves: the local ring surface density, the local ring viscosity, the precise resonance location (useful for pointing images, and potentially for refining saturnian astrometry), and the wave amplitude (potentially providing new constraints upon the masses of the perturbing moons). Our derived surface densities have less scatter than previous measurements that were derived from stronger non-linear waves, and suggest a gentle linear increase in surface density from the inner to the mid-A Ring. We show that ring viscosity consistently increases from the Cassini Division outward to the Encke Gap. Meaningful upper limits on ring thickness can be placed on the Cassini Division (3.0 m at r~118,800 km, 4.5 m at r~120,700 km) and the inner A Ring (10 to 15 m for r<127,000 km).
43 pages, 21 figures; To appear in Icarus
Cited by in corpus (19)
- A planetesimal orbiting within the debris disc around a white dwarf star
- Long-term & large-scale viscous evolution of dense planetary rings
- The population of propellers in Saturn's A Ring
- Microgravity experiments on the collisional behavior of Saturnian ring particles
- Compositions and origins of outer planet systems: Insights from the Roche critical density
- Kronoseismology IV. Six previously unidentified waves in Saturn's middle C ring
- What confines the rings of Saturn?
- Dynamical phenomena at the inner edge of the Keeler gap
- Exploring overstabilities in Saturn's A ring using two stellar occultations
- Large mass inflow rates in Saturn's rings due to ballistic transport and mass loading
- Axisymmetric density waves in Saturn's rings
- Seasonal structures in Saturn's dusty Roche Division correspond to periodicities of the planet's magnetosphere
- The Secular Evolution of a Close Ring-Satellite System: The Excitation of Spiral Density Waves at a Nearby Gap Edge
- Are there moonlets near the Uranian alpha and beta rings?
- Sharp gap edges in dense planetary rings: An axisymmetric diffusion model
- A Traveling Feature in Saturn's Rings
- The dynamics of self-gravity wakes in the Mimas 5:3 bending wave: modifying the linear theory
- Evidence that a novel type of satellite wake might exist in Saturn's E ring
- Vertical structures induced by embedded moonlets in Saturn's rings: the gap region