English
Related papers

Related papers: Neptune Trojans as a Testbed for Planet Formation

200 papers

We investigate the evolution of protoplanets with different masses embedded in an accretion disk, via global fully three-dimensional hydrodynamical simulations. We consider a range of planetary masses extending from one and a half Earth's…

Astrophysics · Physics 2016-06-20 Gennaro D'Angelo , Willy Kley , Thomas Henning

Planets grow via the collisional accretion of small bodies in a protoplanetary disk. Such small bodies feel strong gas drag and their orbits are significantly affected by the gas flow and atmospheric structure around the planet. We…

Earth and Planetary Astrophysics · Physics 2021-08-24 Tatsuya Okamura , Hiroshi Kobayashi

We present two new in situ core accretion simulations of Saturn with planet formation timescales of 3.37 Myr (model S0) and 3.48 Myr (model S1), consistent with observed protostellar disk lifetimes. In model S0, we assume rapid grain…

We use numerical integrations to investigate the dynamical evolution of resonant Trojan and quasi-satellite companions during the late stages of migration of the giant planets Jupiter, Saturn, Uranus, and Neptune. Our migration simulations…

Earth and Planetary Astrophysics · Physics 2015-05-27 Stephen J. Kortenkamp , Emily C. S. Joseph

We present the discovery of two mini Neptunes near a 2:1 orbital resonance configuration orbiting the K0 star TOI-1803. We describe their orbital architecture in detail and suggest some possible formation and evolution scenarios. Using…

Earth and Planetary Astrophysics · Physics 2025-04-02 T. Zingales , L. Malavolta , L. Borsato , D. Turrini , A. Bonfanti , D. Polychroni , G. Mantovan , D. Nardiello , V. Nascimbeni , A. F. Lanza , A. Bekkelien , A. Sozzetti , C. Broeg , L. Naponiello , M. Lendl , A. S. Bonomo , A. E. Simon , S. Desidera , G. Piotto , L. Mancini , M. J. Hooton , A. Bignamini , J. A. Egger , A. Maggio , Y. Alibert , D. Locci , L. Delrez , F. Biassoni , L. Fossati , L. Cabona , G. Lacedelli , I. Carleo , P. Leonardi , G. Andreuzzi , A. Brandeker , R. Cosentino , A. C. M. Correia , R. Claudi , R. Alonso , M. Damasso , T. G. Wilson , T. Bàrczy , M. Pinamonti , D. Baker , K. Barkaoui , D. Barrado Navascues , S. C. C. Barros , W. Baumjohann , T. Beck , C. Beichman , W. Benz , A. Bieryla , N. Billot , P. Bosch-Cabot , L. G. Bouma , D. R. Ciardi , A. Collier Cameron , K. A. Collins , Ian J. M. Crossfield , Sz. Csizmadia , P. E. Cubillos , M. B. Davies , M. Deleuil , A. Deline , O. D. S. Demangeon , B. O. Demory , A. Derekas , D. Dragomir , B. Edwards , D. Ehrenreich , A. Erikson , B. Falk , A. Fortier , M. Fridlund , A. Fukui , D. Gandolfi , K. Gazeas , M. Gillon , E. Gonzales , M. Gudel , P. Guerra , M. N. Guunther , A. Heitzmann , Ch. Helling , S. B. Howell , K. G. Isaak , J. Jenkins , L. L. Kiss , J. Korth , K. W. F. Lam , J. Laskar , A. Lecavelier des Etangs , D. Magrin , R. Matson , E. C. Matthews , P. F. L. Maxted , S. McDermott , M. Munari , C. Mordasini , N. Narita , G. Olofsson , R. Ottensamer , I. Pagano , E. Pallè , G. Peter , D. Pollacco , D. Queloz , R. Ragazzoni , N. Rando , F. Ratti , H. Rauer , I. Ribas , S. Salmon , N. C. Santos , G. Scandariato , S. Seager , D. Sègransan , A. M. S. Smith , J. Schlieder , R. P. Schwarz , A. Shporer , S. G. Sousa , M. Stalport , M. Steinberger , S. Sulis , Gy. M. Szabò , J. D. Twicken , S. Udry , V. Van Grootel , J. Venturini , E. Villaver , N. A. Walton , J. N. Winn

We investigate the dynamical evolution of trans-Neptunian objects (TNOs) in typical scattered disk orbits (scattered TNOs) by performing simulations using several thousand particles lying initially on Neptune-encountering orbits. We explore…

Astrophysics · Physics 2010-11-11 Patryk Sofia Lykawka , Tadashi Mukai

We investigate under what circumstances an embedded planet in a protoplanetary disc may sculpt the dust distribution such that it observationally presents as a `transition' disc. We concern ourselves with `transition' discs that have large…

Earth and Planetary Astrophysics · Physics 2015-06-19 James E. Owen

We report on the discovery of new Martian Trojans within the Minor Planet Center list of asteroids. Their orbital evolution over 10^8 yr shows characteristic signatures of dynamical longevity (Scholl et al, 2005) while their average orbits…

Earth and Planetary Astrophysics · Physics 2015-06-15 Apostolos A. Christou

In 2018, Jewitt identified the "The Trojan Color Conundrum", namely that Neptune's Trojan asteroids (NTs) had no ultra-red members, unlike the the nearby Kuiper Belt. Since then, numerous ultra-red NTs have been discovered, seemingly…

Earth and Planetary Astrophysics · Physics 2023-07-21 Larissa Markwardt , Hsing Wen Lin , David Gerdes , Fred C. Adams

The origin of Uranus and Neptune has long been challenging to explain, due to the large orbital distances from the Sun. After a planetary embryo has been formed, the main accretion processes are likely pebble, gas and planetesimal…

Earth and Planetary Astrophysics · Physics 2023-10-03 Linn E. J. Eriksson , Marit A. S. Mol Lous , Sho Shibata , Ravit Helled

One of the most challenging problems we face in our understanding of planet formation is how Jupiter and Saturn could have formed before the the solar nebula dispersed. The most popular model of giant planet formation is the so-called 'core…

Earth and Planetary Astrophysics · Physics 2015-05-14 H. F. Levison , E. Thommes , M. J. Duncan

A chondrule formation theory is presented where the chondrule formation zone is located within 0.1 AU of the protosun. This hot, optically thick, inner zone of the solar accretion disk is coincident with the formation region of the…

Astrophysics · Physics 2007-05-23 Kurt Liffman , Michael J. I. Brown

The transneptunian objects (TNOs) trapped in mean-motion resonances with Neptune were likely emplaced there during planet migration late in the giant-planet formation process. We perform detailed modelling of the resonant objects detected…

We investigate the survivability of Trojan-type companions of Neptune during primordial radial migration of the giant planets Jupiter, Saturn, Uranus, and Neptune. Loss of Neptune Trojans during planetary migration is not a random diffusion…

Astrophysics · Physics 2009-11-07 Steve Kortenkamp , Renu Malhotra , Tatiana Michtchenko

Much of the dynamical structure of the Kuiper belt can be explained if Neptune migrated over several AU, and/or if Neptune was scattered to an eccentric orbit during planetary instability. An outstanding problem with the existing formation…

Earth and Planetary Astrophysics · Physics 2015-08-19 David Nesvorny

Recent observations by the {\it Kepler} space telescope have led to the discovery of more than 4000 exoplanet candidates consisting of many systems with Earth- to Neptune-sized objects that reside well inside the orbit of Mercury, around…

Earth and Planetary Astrophysics · Physics 2015-06-23 Hilke E. Schlichting

We investigate the contraction of accreting protoclusters using an extension of n-body techniques that incorporates the accretional growth of stars from the gaseous reservoir in which they are embedded. Following on from Monte Carlo studies…

Solar and Stellar Astrophysics · Physics 2015-05-19 Nickolas Moeckel , Cathie J. Clarke

Recently, gas giant planets in nearly circular orbits with large semimajor axes ($a \sim$ 30--1000AU) have been detected by direct imaging. We have investigated orbital evolution in a formation scenario for such planets, based on core…

Earth and Planetary Astrophysics · Physics 2015-06-23 A. Kikuchi , A. Higuchi , S. Ida

Nbody simulations are used to examine the consequences of Neptune's outward migration into the Kuiper Belt, with the simulated endstates being compared rigorously and quantitatively to the observations. These simulations confirm the…

Astrophysics · Physics 2008-11-26 Joseph M. Hahn , Renu Malhotra

Jupiter Trojans preserve primitive formation characteristics due to their collisionless stable orbits. Determination of their shapes and size-frequency distribution constrains the collisional evolution of their parent population which also…