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In the Solar System giant planets come in two flavours: 'gas giants' (Jupiter and Saturn) with massive gas envelopes and 'ice giants' (Uranus and Neptune) with much thinner envelopes around their cores. It is poorly understood how these two…

Earth and Planetary Astrophysics · Physics 2014-11-26 Michiel Lambrechts , Anders Johansen , Alessandro Morbidelli

We present updated non-adiabatic and inhomogeneous evolution models for Uranus and Neptune, employing an interior composition of methane, ammonia, water, and rocks. Following formation trends of the gas giants, Uranus and Neptune formation…

Earth and Planetary Astrophysics · Physics 2025-07-28 Roberto Tejada Arevalo

Uranus and Neptune are the least explored planets in the Solar System. A key question regarding the two planets is the similarity of their observed flows despite the great differences in their obliquity and internal heating. To answer this…

Atmospheric and Oceanic Physics · Physics 2025-10-29 Ilai Guendelman , Yoahi Kaspi

Observations from the Juno and Cassini missions provide essential constraints on the internal structures and compositions of Jupiter and Saturn, resulting in profound revisions of our understanding of the interior and atmospheres of Gas…

Earth and Planetary Astrophysics · Physics 2020-12-16 Tristan Guillot , Leigh Fletcher

The international planetary science community met in London in January 2020, united in the goal of realising the first dedicated robotic mission to the distant Ice Giants, Uranus and Neptune, as the only major class of Solar System planet…

Instrumentation and Methods for Astrophysics · Physics 2021-08-04 L. N. Fletcher , A. A. Simon , M. D. Hofstadter , C. S. Arridge , I. Cohen , A. Masters , K. Mandt , A. Coustenis

The giant planets were the first to form and hold the key to unveiling the solar system's formation history in their interiors and atmospheres. Furthermore, the unique conditions present in the interiors of the giant planets make them…

Earth and Planetary Astrophysics · Physics 2023-02-16 Yamila Miguel , Allona Vazan

We review the interior structure and evolution of Jupiter, Saturn, Uranus and Neptune, and giant exoplanets with particular emphasis on constraining their global composition. Compared to the first edition of this review, we provide a new…

Earth and Planetary Astrophysics · Physics 2021-09-22 Tristan Guillot , Daniel Gautier

Both Uranus and Neptune are thought to have strong zonal winds with velocities of several hundred meters per second. These wind velocities, however, assume solid-body rotation periods based on Voyager 2 measurements of periodic variations…

Earth and Planetary Astrophysics · Physics 2015-05-19 Ravit Helled , John D. Anderson , Gerald Schubert

With more than 15 years since the the first radial velocity discovery of a planet orbiting a Sun-like star, the time baseline for radial velocity surveys is now extending out beyond the orbit of Jupiter analogs. The sensitivity to exoplanet…

Earth and Planetary Astrophysics · Physics 2015-05-28 Stephen R. Kane

Since the discovery of the first giant planet outside the solar system in 1995 (Mayor & Queloz 1995), more than 180 extrasolar planets have been discovered. With improving detection capabilities, a new class of planets with masses 5-20…

Aptly named, ice giants such as Uranus and Neptune contain significant amounts of water. While this water cannot be present near the cloud tops, it must be abundant in the deep interior. We investigate the likelihood of a liquid water ocean…

Astrophysics · Physics 2009-11-11 Sloane J. Wiktorowicz , Andrew P. Ingersoll

Future remote sensing of exoplanets will be enhanced by a thorough investigation of our solar system Ice Giants (Neptune-size planets). What can the configuration of the magnetic field tell us (remotely) about the interior, and what…

Earth and Planetary Astrophysics · Physics 2023-07-17 Abigail Rymer , Kathleen Mandt , Dana Hurley , Carey Lisse , Noam Izenberg , H. Todd Smith , Joseph Westlake , Emma Bunce , Christopher Arridge , Adam Masters , Mark Hofstadter , Amy Simon , Pontus Brandt , George Clark , Ian Cohen , Robert Allen , Sarah Vine , Kenneth Hansen , George Hospodarsky , William Kurth , Paul Romani , Laurent Lamy , Philippe Zarka , Hao Cao , Carol Paty , Matthew Hedman , Elias Roussos , Dale Cruikshank , William Farrell , Paul Fieseler , Andrew Coates , Roger Yelle , Christopher Parkinson , Burkhard Militzer , Denis Grodent , Peter Kollmann , Ralph McNutt , Nicolas André , Nathan Strange , Jason Barnes , Luke Dones , Tilmann Denk , Julie Rathbun , Jonathan Lunine , Ravi Desai , Corey Cochrane , Kunio M. Sayanagi , Frank Postberg , Robert Ebert , Thomas Hill , Ingo Mueller-Wodarg , Leonardo Regoli , Duane Pontius , Sabine Stanley , Thomas Greathouse , Joachim Saur , Essam Marouf , Jan Bergman , Chuck Higgins , Robert Johnson , Michelle Thomsen , Krista Soderlund , Xianzhe Jia , Robert Wilson , Jacob Englander , Jim Burch , Tom Nordheim , Cesare Grava , Kevin Baines , Lynnae Quick , Christopher Russell , Thomas Cravens , Baptiste Cecconi , Shahid Aslam , Veronica Bray , Katherine Garcia-Sage , John Richardson , John Clark , Sean Hsu , Richard Achterberg , Nick Sergis , Flora Paganelli , Sasha Kempf , Glenn Orton , Ganna Portyankina , Geraint Jones , Thanasis Economou , Timothy Livengood , Stamatios Krimigi , James Szalay , Catriona Jackman , Phillip Valek , Alain Lecacheux , Joshua Colwell , Jamie Jasinski , Federico Tosi , Ali Sulaiman , Marina Galand , Anna Kotova , Krishan Khurana , Margaret Kivelson , Darrell Strobel , Aikaterina Radiota , Paul Estrada , Stefano Livi , Abigail Azari , Japheth Yates , Frederic Allegrini , Marissa Vogt , Marianna Felici , Janet Luhmann , Gianrico Filacchione , Luke Moore

Interior models of Uranus and Neptune often assume discrete layers, but sharp interfaces are expected only if major constituents are immiscible. Diffuse interfaces could arise if accretion favored a central concentration of the least…

Earth and Planetary Astrophysics · Physics 2021-02-02 Elizabeth Bailey , David J. Stevenson

Probing the interiors of the gas giant planets in our Solar System is not an easy task. It requires a set of accurate measurements combined with theoretical models that are used to infer the planetary composition and its depth dependence.…

Earth and Planetary Astrophysics · Physics 2018-12-19 Ravit Helled

Ice-rich planets are formed exterior to the water ice-line and thus are expected to contain a substantial amount of ices. The high ice content leads to unique conditions in the interior, under which the structure of a planet is affected by…

Earth and Planetary Astrophysics · Physics 2022-03-09 Allona Vazan , Re'em Sari , Ronit Kessel

Satellites of giant planets thought to form in gaseous circumplanetary disks (CPDs) during the late planet-formation phase, but it was unknown so far whether smaller mass planets, such as the ice giants could form such disks, thus moons…

Earth and Planetary Astrophysics · Physics 2018-12-05 J. Szulágyi , M. Cilibrasi , L. Mayer

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

Voyager 2 observations revealed that the internal luminosity of Neptune is an order of magnitude higher than that of Uranus. If the two planets have similar interior structures and cooling histories, the luminosity of Neptune can only be…

Earth and Planetary Astrophysics · Physics 2015-10-21 Sarah E. Dodson-Robinson

C-H-N-O system is central for organic chemistry and biochemistry, and plays a major role in planetary science (dominating the composition of "ice giants" Uranus and Neptune). The inexhaustible chemical diversity of this system at normal…

Materials Science · Physics 2021-06-09 Anastasia S. Naumova , Sergey V. Lepeshkin , Pavel V. Bushlanov , Artem R. Oganov

The origin of Uranus and Neptune remains a challenge for planet formation models. A potential explanation is that the planets formed from a population of a few planetary embryos with masses of a few Earth masses which formed beyond Saturn's…

Earth and Planetary Astrophysics · Physics 2021-01-20 Alice Chau , Christian Reinhardt , André Izidoro , Joachim Stadel , Ravit Helled