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Related papers: The obliquity of Enceladus

200 papers

Electromagnetic (EM) sounding can constrain the electrical structure of Enceladus and, in turn, the salinity of its ocean and the porosity, fluid content, and thermal state of its hydrothermally active core. Here, we assess the feasibility…

Earth and Planetary Astrophysics · Physics 2026-05-19 Alexander Grayver , Joachim Saur

Recent work suggests that many short-period super-Earth and sub-Neptune planets may have significant spin axis tilts ("obliquities"). When planets are locked in high-obliquity states, the tidal dissipation rate may increase by several…

Earth and Planetary Astrophysics · Physics 2019-12-04 Sarah Millholland

In the preceding paper (Efroimsky 2017), we derived an expression for the tidal dissipation rate in a homogeneous near-spherical Maxwell body librating in longitude. Now, by equating this expression to the outgoing energy flux due to the…

Earth and Planetary Astrophysics · Physics 2018-04-10 Michael Efroimsky

Active eruptions from the south polar region of Saturn's small (~500 km diameter) moon Enceladus are concentrated along a series of lineaments known as the `tiger stripes', thought to be partially open fissures that connect to the liquid…

Geophysics · Physics 2019-11-11 Douglas J. Hemingway , Maxwell L. Rudolph , Michael Manga

Several studies have already considered the influence of tides on the evolution of systems composed of a star and a close-in companion to tentatively explain different observations such as the spin-up of some stars with hot Jupiters, the…

Solar and Stellar Astrophysics · Physics 2015-06-17 David Cébron , Michael Le Bars , Patrice Le Gal , Claire Moutou , J. Leconte , Alban Sauret

Spacecraft observations suggest that the plumes of Saturn's moon Enceladus draw water from a subsurface ocean, but the sustainability of conduits linking ocean and surface is not understood. Observations show sustained (though tidally…

Earth and Planetary Astrophysics · Physics 2016-06-02 Edwin S. Kite , Allan M. Rubin

Mercury is expected to deviate from the classical Cassini state since this state is defined for a uniformly precessing rigid planet. We develop an extended Cassini state model that includes the variations (or nutations) in obliquity and…

Earth and Planetary Astrophysics · Physics 2017-05-03 Rose-Marie Baland , Marie Yseboodt , Attilio Rivoldini , Tim Van Hoolst

Since the discovery of an ice particle plume erupting from the south polar terrain on Saturn's moon Enceladus, the geophysical mechanisms driving its activity have been the focus of substantial scientific research. The pattern and…

Earth and Planetary Astrophysics · Physics 2018-10-10 Ben Southworth , Sascha Kempf , Joe Spitale

We present a model of the Cassini state of Mercury that comprises an inner core, a fluid core and a mantle. Our model includes inertial and gravitational torques between interior regions, and viscous and electromagnetic (EM) coupling at the…

Earth and Planetary Astrophysics · Physics 2022-01-04 Mathieu Dumberry

On icy worlds, the ice shell and subsurface ocean form a coupled system -- heat and salinity flux from the ice shell induced by the ice thickness gradient drives circulation in the ocean, and in turn, the heat transport by ocean circulation…

Earth and Planetary Astrophysics · Physics 2022-08-17 Wanying Kang

Enceladus' plume consists mainly of a mixture of water vapor and solid ice particles that may originate from a subsurface ocean. The physical processes underlying Enceladus' plume particle dynamics are still being debated, and quantifying…

Earth and Planetary Astrophysics · Physics 2023-05-24 H. Sharma , M. M. Hedman , S. Vahidinia

Earth-based radar observations of the rotational dynamics of Mercury (Margot et al. 2012) combined with the determination of its gravity field by MESSENGER (Smith et al. 2012) give clues on the internal structure of Mercury, in particular…

Earth and Planetary Astrophysics · Physics 2013-10-22 Benoit Noyelles , Christoph Lhotka

Enceladus is a prime target in the search for life in our solar system, having an active plume likely connected to a large liquid water subsurface ocean. Using the sensitive NIRSpec instrument onboard JWST, we searched for organic compounds…

Tidal dissipation inside giant planets is important for the orbital evolution of their natural satellites. It is conventionally treated by parameterized equilibrium tidal theory, in which the tidal torque declines rapidly with distance, and…

Earth and Planetary Astrophysics · Physics 2017-12-13 Jing Luan , Jim Fuller , Eliot Quataert

Enceladus is a primary target for astrobiology due to the $\rm H_2O$ plume ejecta measured by the Cassini spacecraft and the inferred subsurface ocean sustained by tidal heating. Sourcing the plumes via a direct connection from the ocean to…

Planets with high obliquity receive more radiation in the polar regions than at low latitudes, and thus, assuming an ocean-covered surface with sufficiently high heat capacity, their meridional temperature gradient was shown to be reversed…

Earth and Planetary Astrophysics · Physics 2019-05-22 Wanying Kang , Ming Cai , Eli Tziperman

We revisit the rotation dynamics of a rigid satellite with either a liquid core or a global sub-surface ocean. In both problems, the flow of the fluid component is assumed inviscid. The study of a hollow satellite with a liquid core is…

Earth and Planetary Astrophysics · Physics 2017-10-04 Gwenaël Boué , Nicolas Rambaux , Andy Richard

The planetary obliquity plays a significant role in determining physical properties of planetary surfaces and climate. As direct detection is constrained due to the present observation accuracy, kinetic theories are helpful to predict the…

Earth and Planetary Astrophysics · Physics 2024-06-04 Xiumin Huang , Jianghui Ji , Shangfei Liu , Ruobing Dong , Su Wang

Enceladus is the Saturnian satellite known to have water vapor erupting from its south pole region called Tiger Stripes. Data collected by Cassini Ultraviolet Imaging Spectrograph during Enceladus transiting Saturn allow us to estimate…

Earth and Planetary Astrophysics · Physics 2024-03-26 Jan Kotlarz , Katarzyna Kubiak , Natalia Zalewska