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Related papers: Dynamics of Haumea's dust ring

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The recently discovered ring around the dwarf planet (136108) Haumea is located near the 1:3 resonance between the orbital motion of the ring particles and the spin of Haumea. In the current work is studied the dynamics of individual…

Earth and Planetary Astrophysics · Physics 2019-02-12 O. C. Winter1 , G. Borderes-Motta1 , T. Ribeiro

Haumea is the only known trans-Neptunian object with a ring. The ring is in a position that causes a 3:1 spin-orbit resonance with the rotational period of Haumea, which has a triaxial shape. The non-axisymmetric gravitational field around…

Earth and Planetary Astrophysics · Physics 2020-07-08 Iori Sumida , Yuya Ishizawa , Natsuki Hosono , Takanori Sasaki

Context: Rings around giant planets are a common feature of the solar system. Even though solar radiation pressure is known to destabilize rings by exciting the orbital eccentricity of its particles, the Centaur Chariklo (and possibly…

Earth and Planetary Astrophysics · Physics 2025-04-28 Zs. Regaly , V. Frohlich , Cs. Kiss

Among the growing number of small body rings in the solar system, the ring of Haumea has a special status as it is likely suitable for direct imaging in the visible and submillimeter wavelengths. In this paper, we highlight its sole…

Earth and Planetary Astrophysics · Physics 2024-12-10 Csilla Kalup , László Molnár , Csaba Kiss

We investigate the rotational emission from dust grains that rotate around non- principal axes. We argue that in many phases of the interstellar medium, the smallest grains, which dominate spinning dust emission, are likely to have their…

Astrophysics of Galaxies · Physics 2015-03-13 Kedron Silsbee , Yacine Ali-Haimoud , Christopher M. Hirata

Among the four known transneptunian dwarf planets, Haumea is an exotic, very elongated, and fast rotating body. In contrast to the other dwarf planets, its size, shape, albedo, and density are not well constrained. Here we report results of…

Many asteroids show indications they have undergone impacts with meteoroid particles having radii between 0.01 m and 1 m. During such impacts, small dust grains will be ejected at the impact site. The possibility of these dust grains (with…

Space Physics · Physics 2009-11-10 R. Nazzario , T. W. Hyde , L. Barge

The dwarf planet Haumea is one of the most compelling transneptunian objects (TNOs) to study, hosting two small, dynamically interacting satellites, a family of nearby spectrally unique objects, and a ring system. Haumea itself is extremely…

Earth and Planetary Astrophysics · Physics 2024-03-20 Benjamin C. N. Proudfoot , Darin A. Ragozzine , William Giforos , Will M. Grundy , Mariah MacDonald , William J. Oldroyd

Since 2013, dense and narrow rings are known around the small Centaur object Chariklo and the dwarf planet Haumea. Dense material has also been detected around the Centaur Chiron, although its nature is debated. This is the first time ever…

Earth and Planetary Astrophysics · Physics 2020-01-22 Bruno Sicardy , Stefan Renner , Rodrigo Leiva , Françoise Roques , Maryame El Moutamid , Pablo Santos-Sanz , Josselin Desmars

Dense and narrow rings have been discovered recently around the small Centaur object Chariklo and the dwarf planet Haumea, while being suspected around the Centaur Chiron. They are the first rings observed in the Solar System elsewhere than…

Earth and Planetary Astrophysics · Physics 2019-03-15 B. Sicardy , R. Leiva , S. Renner , F. Roques , M. El Moutamid , P. Santos-Sanz , J. Desmars

The recent discovery of rings and massive satellites around minor bodies and dwarf planets suggests that they may often coexist, as for example around Haumea. A ring perturbed by an oblate central body and by an inclined satellite may…

Earth and Planetary Astrophysics · Physics 2020-11-04 Francesco Marzari

Precise-Doppler experiments suggest that a massive (m sin i=0.86 M_J) planet orbits at semimajor axis a=3.4 AU around Epsilon Eridani, a nearby star with a massive debris disk. The dynamical perturbations from such a planet would mold the…

Astrophysics · Physics 2009-11-10 Sean M. Moran , Marc J. Kuchner , Matthew J. Holman

Radio images of protoplanetary disks demonstrate that dust grains tend to organize themselves into rings. These rings may be a consequence of dust trapping within gas pressure maxima wherein the local high dust-to-gas ratio is expected to…

Earth and Planetary Astrophysics · Physics 2022-10-12 Eve J. Lee , J. R. Fuentes , Philip F. Hopkins

This article reviews the current status of theoretical modeling of electric dipole radiation from spinning dust grains. The fundamentally simple problem of dust grain rotation appeals to a rich set of concepts of classical and quantum…

Astrophysics of Galaxies · Physics 2015-08-21 Yacine Ali-Haïmoud

In this paper we analyze the dynamical behavior of large dust grains in the vicinity of a cometary nucleus. To this end we consider the gravitational field of the irregularly shaped body, as well as its electric and magnetic fields. Without…

Earth and Planetary Astrophysics · Physics 2017-10-25 Yu Jiang , Juergen Schmidt , Hexi Baoyin , Hengnian Li , Junfeng Li

Relatively large dust grains (referred to as pebbles) accumulate at the outer edge of the gap induced by a planet in a protoplanetary disk, and a ring structure with a high dust-to-gas ratio can be formed. Such a ring has been thought to be…

Earth and Planetary Astrophysics · Physics 2021-11-24 Kazuhiro D. Kanagawa , Takayuki Muto , Hidekazu Tanaka

Context.Transition disks are believed to be the final stages of protoplanetary disks, during which a forming planetary system or photoevaporation processes open a gap in the inner disk, drastically changing the disk structure. From…

Earth and Planetary Astrophysics · Physics 2012-09-17 P. Pinilla , M. Benisty , T. Birnstiel

We investigate the dynamics of charged dust close to outer mean-motion resonances with planet Jupiter. The importance of the interplanetary magnetic field on the orbital evolution of dust is clearly demonstrated. New dynamical phenomena are…

Earth and Planetary Astrophysics · Physics 2019-11-11 Christoph Lhotka , Catalin Gales

Large-scale vertical magnetic fields are believed to play a key role in the evolution of protoplanetary discs. Associated with non-ideal effects, such as ambipolar diffusion, they are known to launch a wind that could drive accretion in the…

Earth and Planetary Astrophysics · Physics 2020-07-22 A. Riols , G. Lesur , F. Menard

Haumea, thought to be the Kuiper Belt's 3rd most massive object, has a fast 3.92 hr rotational period, resulting in its shape as a triaxial ellipsoid. Here, we make the first detailed predictions of Haumea's surface morphology, considering…

Earth and Planetary Astrophysics · Physics 2024-06-14 George D McDonald , Lujendra Ojha
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