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Related papers: A new pattern in Saturn's D ring created in late 2…

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Certain spiral density waves in Saturn's rings are generated through resonances with planetary normal modes, making them valuable probes of Saturn's internal structure. Previous research has primarily focused on the rotation rates of these…

Some wave features found in the C-ring of Saturn appear to be excited by resonances with normal mode oscillations of the planet. The waves are found at locations in the rings where the ratio of orbital to oscillation frequencies is given by…

Earth and Planetary Astrophysics · Physics 2015-06-18 Mark S. Marley

Density waves in Saturn's rings are usually tightly wrapped spiral patterns generated by resonances with either Saturn's moons or structures inside the planet. However, between the Barnard and Bessel Gaps in the Cassini Division (i.e.…

Earth and Planetary Astrophysics · Physics 2019-02-27 M. M. Hedman , P. D. Nicholson

The origin and long-term evolution of Saturn's rings is still an unsolved problem in modern planetary science. In this chapter we review the current state of our knowledge on this long-standing question for the main rings (A, Cassini…

Earth and Planetary Astrophysics · Physics 2015-05-14 Sebastien Charnoz , Luke Dones , Larry W. Esposito , Paul R. Estrada , Matthew M. Hedman

We present a review of Saturn's interior structure and thermal evolution, with a particular focus on work in the past 5 years. Data from the Cassini mission, including a precise determination of the gravity field from the Grand Finale…

We report observations of stripe-like features in Enceladus' plumes captured simultaneously by Cassini's VIMS-IR and ISS NAC instruments during flyby E17, with similar patterns seen in VIMS-IR data from flyby E13 and E19. These parallel…

The zeta ring is the innermost component of the Uranian ring system. It is of scientific interest because its morphology changed significantly between the Voyager 2 encounter in 1986 and subsequent Earth-based observations around 2007. It…

Earth and Planetary Astrophysics · Physics 2023-06-09 M. M. Hedman , I. Regan , T. Becker , S. M. Brooks , I. de Pater , M. Showalter

The Iapetus -1:0 nodal bending wave, the first spiral wave ever described in Saturn's rings, has been seen again for the first time in 29 years. We demonstrate that it is in fact the nodal bending wave, not the 1:0 apsidal density wave as…

Earth and Planetary Astrophysics · Physics 2015-06-15 Matthew S. Tiscareno , Matthew M. Hedman , Joseph A. Burns , John W. Weiss , Carolyn C. Porco

Voyager images and Cassini occultation data have previously shown that the behavior of the outer edge of Saturn's massive B ring is determined only in part by a static response to the 2:1 inner Lindblad resonance with Mimas. In Cassini…

Earth and Planetary Astrophysics · Physics 2010-11-11 Joseph N. Spitale , Carolyn C. Porco

This paper addresses the fine-scale axisymmetric structure exhibited in Saturn's A and B-rings. We aim to explain both the periodic microstructure on 150-220m, revealed by the Cassini UVIS and RSS instruments, and the irregular variations…

Earth and Planetary Astrophysics · Physics 2015-05-13 Henrik N. Latter , Gordon I. Ogilvie

The co-orbital satellites of Saturn, Janus and Epimetheus, swap radial positions every 4.0 years. Since \textit{Cassini} has been in orbit about Saturn, this has occurred on 21 January in 2006, 2010, and 2014. We describe the effects of…

Earth and Planetary Astrophysics · Physics 2016-07-19 Morgan E. Rehnberg , Larry W. Esposito , Zarah L. Brown , Nicole Albers , Miodrag Sremčević , Glen R. Stewart

We describe a model that accounts for the complex morphology of spiral density waves raised in Saturn's rings by the co-orbital satellites, Janus and Epimetheus. Our model may be corroborated by future Cassini observations of these…

Saturns rings are known to show remarkable real time variability in their structure. Many of which can be associated to interactions with nearby moons and moonlets. Possibly the most interesting and dynamic place in the rings, probably in…

Earth and Planetary Astrophysics · Physics 2016-09-12 Phil J Sutton , Feo Kusmartsev

A new method based on continuous wavelet transform with the complex Morlet wavelet to analyze Saturn main rings is presented. It allows to investigate in detail the resonance zones and reveal the coexistence of waves with stable periods and…

Astrophysics · Physics 2007-05-23 E. B. Postnikov , A. Loskutov

At the solar equinox in August 2009, the Composite Infrared Spectrometer (CIRS) onboard Cassini showed the lowest Saturn's ring temperatures ever observed. Detailed radiative transfer models show that the observed equinox temperatures of…

Earth and Planetary Astrophysics · Physics 2015-09-01 Ryuji Morishima , Linda Spilker , Shawn Brooks , Estelle Deau , Stu Pilorz

Saturn's F ring is subject to dynamic structural changes over short periods. Among the observed phenomena are diffuse extended bright clumps (ECs) ~ 3-40 degrees in longitudinal extent. These ECs appear, evolve, and disappear over a span of…

Earth and Planetary Astrophysics · Physics 2014-08-13 Robert S. French , Shannon K. Hicks , Mark R. Showalter , Adrienne K. Antonsen , Douglas R. Packard

A multi-decade record of ground-based mid-infrared (7-25 $\mu$m) images of Saturn is used to explore seasonal and non-seasonal variability in thermal emission over more than a Saturnian year (1984-2022). Thermal emission measured by 3-m and…

Saturn's E ring consists of micron-sized particles launched from Enceladus by that moon's geological activity. A variety of small-scale structures in the E-ring's brightness have been attributed to tendrils of material recently launched…

Earth and Planetary Astrophysics · Physics 2021-07-20 M. M. Hedman , M. Young

Small (~50km scale), irregular features seen in Cassini images to be emanating from Saturn's F ring have been termed mini-jets by Attree et al. (2012). One particular mini-jet was tracked over half an orbital period, revealing its evolution…

Earth and Planetary Astrophysics · Physics 2017-12-21 Nicholas O. Attree , Carl D. Murray , Gareth A. Williams , Nicholas J. Cooper

The ejecta discharged by impacting meteorites can redistribute a planetary ring's mass and angular momentum. This `ballistic transport' of ring properties instigates a linear instability that could generate the 100--1000-km undulations…

Earth and Planetary Astrophysics · Physics 2015-10-14 Henrik Latter , Gordon Ogilvie , Marie Chupeau