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Related papers: Origin of craters on Phoebe: comparison with Cassi…

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We report the discovery of a Neptune-like planet (LP 714-47 b, P = 4.05204 d, m_b = 30.8 +/- 1.5 M_earth , R_b = 4.7 +/- 0.3 R_earth ) located in the 'hot Neptune desert'. Confirmation of the TESS Object of Interest (TOI 442.01) was…

Earth and Planetary Astrophysics · Physics 2021-01-04 S. Dreizler , I. , J. , M. Crossfield , D. Kossakowski , P. Plavchan , S. , V. Jeffers , J. Kemmer , R. Luque , N. Espinoza , E. Pallé , K. Stassun , E. Matthews , B. Cale , J. , A. Caballero , M. Schlecker , J. Lillo-Box , M. Zechmeister , S. Lalitha , A. Reiners , A. Soubkiou , B. Bitsch , M. , R. Zapatero Osorio , P. Chaturvedi , A. , P. Hatzes , G. Ricker , R. Vanderspek , D. , W. Latham , S. Seager , J. Winn , J. M. Jenkins , J. Aceituno , P. , J. Amado , K. Barkaoui , M. Barbieri , N. , M. Batalha , F. , F. Bauer , B. Benneke , Z. Benkhaldoun , C , Beichman , J. Berberian , J. Burt , R. , P. Butler , D. , A. Caldwell , A. Chintada , A. Chontos , J. , L. Christiansen , D. R. Ciardi , C. Cifuentes , K. , A. Collins , K. , I. Collins , D. Combs , M. Cortés-Contreras , J. , D. Crane , T. Daylan , D. Dragomir , E. Esparza-Borges , P. Evans , F. Feng , E. , E. Flowers , A. Fukui , B. Fulton , E. Furlan , E. Gaidos , C. Geneser , S. Giacalone , M. Gillon , E. Gonzales , V. Gorjian , C. Hellier , D. Hidalgo , A. , W. Howard , S. Howell , D. Huber , H. Isaacson , E. Jehin , E. , L. , N. Jensen , A. Kaminski , S. , R. Kane , K. Kawauchi , J. , F. Kielkopf , H. Klahr , M. , R. Kosiarek , L. Kreidberg , M. , Kürster , M. Lafarga , J. Livingston , D. Louie , A. Mann , A. Madrigal-Aguado , R. , A. Matson , T. Mocnik , J. , C. Morales , P. , S. Muirhead , F. Murgas , S. Nandakumar , N. Narita , G. Nowak , M. Oshagh , H. Parviainen , V. , M. Passegger , D. Pollacco , F. , J. Pozuelos , A. Quirrenbach , M. Reefe , I. Ribas , P. Robertson , C. Rodríguez-López , M. , E. Rose , A. Roy , A. Schweitzer , J. Schlieder , S. Shectman , A. Tanner , H. , V. Şenavcı , J. Teske , J. , D. Twicken , J. Villasenor , S. X. Wang , L. , M. Weiss , J. Wittrock , M. Yılmaz , F. Zohrabi

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

High-precision radial velocity surveys explore the population of low-mass exoplanets orbiting bright stars. This allows accurately deriving their orbital parameters such as their occurrence rate and the statistical distribution of their…

Ceres, the dwarf planet in the main asteroid belt, hosts heavily cratered surfaces where craters are continuously eroded mainly due to impact bombardment with a limited influence by non-impact processes. Over continuous bombardment, such…

Earth and Planetary Astrophysics · Physics 2026-04-20 Reem Vitale , Masatoshi Hirabayashi

We use solar occultations observed by the Visual and Infrared Mapping Spectrometer aboard the Cassini Spacecraft to extract the 1 to 5 micron transmission spectrum of Saturn, as if it were a transiting exoplanet. We detect absorption from…

Earth and Planetary Astrophysics · Physics 2015-12-09 Paul A. Dalba , Philip S. Muirhead , Jonathan J. Fortney , Matthew M. Hedman , Philip D. Nicholson , Mark J. Veyette

A new model for the shape of the prominent eccentric ringlet in the gap exterior to Saturn's B-ring is developed based on Cassini imaging observations taken over about 8 years. Unlike previous treatments, the new model treats each edge of…

Earth and Planetary Astrophysics · Physics 2016-08-31 Joseph N. Spitale , Joseph M. Hahn

The irregular satellites of outer planets are thought to have been captured from heliocentric orbits. The exact nature of the capture process, however, remains uncertain. We examine the possibility that irregular satellites were captured…

Earth and Planetary Astrophysics · Physics 2015-06-18 D. Nesvorny , D. Vokrouhlicky , R. Deienno

Saturn's rings are rock-poor, containing 90%-95% ice by mass. As a group, Saturn's moons interior to and including Tethys are also about 90% ice. Tethys itself contains <6% rock by mass, in contrast to its similar-mass outer neighbor Dione,…

Earth and Planetary Astrophysics · Physics 2017-02-16 Julien Salmon , Robin M. Canup

Saturn's largest icy moon, Rhea, hosts a tenuous surface-sputtered exosphere composed primarily of molecular oxygen and carbon dioxide. In this Letter, we examine Cassini Plasma Spectrometer velocity space distributions near Rhea and…

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…

The Cassini spacecraft's Grand Finale orbits provided a unique opportunity to probe Saturn's gravity field and interior structure. Doppler measurements yielded unexpectedly large values for the gravity harmonics J_6, J_8, and J_10 that…

Earth and Planetary Astrophysics · Physics 2019-07-17 B. Militzer , S. Wahl , W. B. Hubbard

Saturn formed beyond the snow line in the primordial solar nebula that made it possible for it to accrete a large mass. Disk instability and core accretion models have been proposed for Saturn's formation, but core accretion is favored on…

Earth and Planetary Astrophysics · Physics 2016-10-05 Sushil K. Atreya , Aurelien Crida , Tristan Guillot , Jonathan I. Lunine , Nikku Madhusudhan , Olivier Mousis

In its decade of operation the Cassini mission has allowed us to look deep into Saturn's atmosphere and investigate the processes occurring below its enshrouding haze. We use Visual and Infrared Mapping Spectrometer (VIMS) 4.6-5.2 micron…

Earth and Planetary Astrophysics · Physics 2016-02-16 Joanna K Barstow , Patrick G. J. Irwin , Leigh N. Fletcher , Rohini S. Giles , Cecile Merlet

Stars formed in clusters can encounter other stars at close distances. In typical open clusters in the Solar neighbourhood containing hundreds or thousands of member stars, ten to twenty per cent of Solar-mass member stars are expected to…

Earth and Planetary Astrophysics · Physics 2019-07-10 Daohai Li , Alexander J. Mustill , Melvyn B. Davies

In star clusters, close stellar encounters can strongly impact the architecture of a planetary system or even destroy it. We present a systematic study on the effects of stellar flybys on two-planet systems. When such a system experiences…

Earth and Planetary Astrophysics · Physics 2024-07-22 Fangyuan Yu , Dong Lai

The European Space Agency's Rosetta spacecraft passed by the main belt asteroid (21) Lutetia the 10th July 2010. With its ~100km size, Lutetia is one of the largest asteroids ever imaged by a spacecraft. During the flyby, the on-board…

Earth and Planetary Astrophysics · Physics 2015-06-03 S. Marchi , M. Massironi , J. -B. Vincent , A. Morbidelli , S. Mottola , F. Marzari , M. Kueppers , S. Besse , N. Thomas , C. Barbieri , G. Naletto , H. Sierks

Recent astronomical observations, in particular from the Kepler and TESS missions and their related follow-ups, have revealed an abundance of exoplanets in the size range between Neptune (4 Earth radii) and Earth (1 Earth radii ), as well…

Earth and Planetary Astrophysics · Physics 2026-04-10 Li Zeng , Stephanie C. Werner , Stein B. Jacobsen , Elena Mamonova , Reidar G. Trønnes , Ramon Brasser

We confirm the planetary nature of Kepler-412b, listed as planet candidate KOI-202 in the Kepler catalog, thanks to our radial velocity follow-up program of Kepler-released planet candidates, which is on going with the SOPHIE spectrograph.…

Saturn's quasi-periodic planet-encircling storms are the largest convecting outbursts in the Solar System. The last eruption was in 1990. A new eruption started in December 2010 and presented the first-ever opportunity to observe such…

We simulate the formation of planetary systems around Alpha Centauri B. The N-body accretionary evolution of a 1/r disk populated with 400-900 lunar-mass protoplanets is followed for 200 Myr. All simulations lead to the formation of…

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