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相关论文: Beyond Point Masses. III. Detecting Haumea's Nonsp…

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Haumea is a dwarf planet with two known satellites, an unusually high spin rate, and a large collisional family, making it one of the most interesting objects in the outer solar system. A fully self-consistent formation scenario responsible…

地球与行星天体物理 · 物理学 2016-06-08 Luke D. Burkhart , Darin Ragozzine , Michael E. Brown

Using precise relative astrometry from the Hubble Space Telescope and the W. M. Keck Telescope, we have determined the orbits and masses of the two dynamically interacting satellites of the dwarf planet (136108) Haumea, formerly 2003 EL61.…

地球与行星天体物理 · 物理学 2014-11-18 Darin Ragozzine , Michael E. Brown

Hi'iaka is the larger outer satellite of the dwarf planet Haumea. Using relative photometry from the Hubble Space Telescope and Magellan and a phase dispersion minimization analysis, we have identified the rotation period of Hi'iaka to be…

The dwarf planet Haumea has two large satellites, Namaka and Hi'iaka, which orbit at relatively large separations. Both moons have significant eccentricities and inclinations, in a pattern that is consistent with a past orbital resonance…

地球与行星天体物理 · 物理学 2015-06-16 Matija Ćuk , Darin Ragozzine , David Nesvorný

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…

The dwarf planet (136108) Haumea has an intriguing combination of unique physical properties: near-breakup spin, two regular satellites, and an unexpectedly compact family. While these properties indicate formation by collision, there is no…

地球与行星天体物理 · 物理学 2019-05-29 Benjamin Proudfoot , Darin Ragozzine

Haumea is one of the most interesting and intriguing transneptunian objects (TNOs). It is a large, bright, fast rotator, and its spectrum indicates nearly pure water ice on the surface. It has at least two satellites and a dynamically…

地球与行星天体物理 · 物理学 2016-06-01 Audrey Thirouin , Scott S. Sheppard , Keith S. Noll , Nicholas A. Moskovitz , Jose-Luis Ortiz , Alain Doressoundiram

The transneptunian region of the solar system is populated by a wide variety of icy bodies showing great diversity. The dwarf planet (136108) Haumea is among the largest TNOs and displays a highly elongated shape and hosts two moons,…

地球与行星天体物理 · 物理学 2016-09-07 F. Gourgeot , B. Carry , C. Dumas , F. Vachier , F. Merlin , P. Lacerda , M. A. Barucci , J. Berthier

We present several lines of evidence based on different kinds of observations to conclude that rotational fission has likely occurred for a fraction of the known Trans-Neptunian Objects (TNOs). It is also likely that a number of binary…

地球与行星天体物理 · 物理学 2015-05-30 J. L. Ortiz , A. Thirouin , A. Campo Bagatin , R. Duffard , J. Licandro , D. C. Richardson , P. Santos-Sanz , N. Morales , P. G. Benavidez

Haumea is the third-largest of the five officially recognized dwarf planets and one of the four that reside in the trans-Neptunian region. It is among the most exotic bodies in the Solar System, with an exceptionally rapid rotation, a…

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…

地球与行星天体物理 · 物理学 2020-07-08 Iori Sumida , Yuya Ishizawa , Natsuki Hosono , Takanori Sasaki

The particle dynamics of the recently observed ring around dwarf planet Haumea is numerically investigated. The point mass gravitational force, a second degree and order gravity field, and the solar radiation pressure as the main…

地球与行星天体物理 · 物理学 2018-08-01 Tamás Kovács , Zsolt Regály

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…

地球与行星天体物理 · 物理学 2024-06-14 George D McDonald , Lujendra Ojha

Stellar occultations are an ideal way to characterize the physical and orbital properties of trans-Neptunian binary systems. In this research note, we detail the prediction and observation of a stellar occultation observed with NASA's IRTF…

地球与行星天体物理 · 物理学 2025-03-21 F. L. Rommel , B. C. N. Proudfoot , B. J. Holler , J. L. Ortiz , E. Fernández-Valenzuela

A recent occultation measurement of the dwarf planet Haumea (Ortiz et al. 2017) revealed an elongated shape with the longest axis comparable to Pluto's mean diameter. The chords also indicate a ring around Haumea's equatorial plane, where…

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…

地球与行星天体物理 · 物理学 2019-02-12 O. C. Winter1 , G. Borderes-Motta1 , T. Ribeiro

We present time-resolved near-infrared (J and H) photometry of the extreme Kuiper belt object (136108) Haumea (formerly 2003 EL61) taken to further investigate rotational variability of this object. The new data show that the near-infrared…

天体物理学 · 物理学 2009-11-13 Pedro Lacerda

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…

地球与行星天体物理 · 物理学 2020-11-04 Francesco Marzari

Haumea, a rapidly rotating elongated dwarf planet (~ 1500 km in diameter), has two satellites and is associated with a "family" of several smaller Kuiper Belt objects (KBOs) in similar orbits. All members of the Haumea system share a water…

地球与行星天体物理 · 物理学 2015-05-18 Zoe M. Leinhardt , Robert A. Marcus , Sarah T. Stewart

A group of trans-Neptunian objects (TNO) are dynamically related to the dwarf planet 136108 Haumea. Ten of them show strong indications of water ice on their surfaces, are assumed to have resulted from a collision, and are accepted as the…

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