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Jupiter's Great Red Spot (GRS) was mapped by the James Webb Space Telescope (JWST)/Mid-Infrared Instrument (4.9-27.9 micron) in July and August 2022. These observations took place alongside a suite of visual and infrared observations from;…

We present thermal phase curve measurements for the hot Jupiter WASP-103b observed with Hubble/WFC3 and Spitzer/IRAC. The phase curves have large amplitudes and negligible hotspot offsets, indicative of poor heat redistribution to the…

We present a new set of measurements obtained with the Combined Array for Research in Millimeter-wave Astronomy (CARMA) of Jupiter's microwave thermal emission near the 1.3 cm ammonia (NH$_{3}$) absorption band. We use these observations to…

Earth and Planetary Astrophysics · Physics 2018-03-14 Ramsey L. Karim , David DeBoer , Imke de Pater , Garrett K. Keating

We report the first detection of stratospheric propadiene (CH$_2$CCH$_2$) and propene (C$_3$H$_6$) at Jupiter's mid-to-high northern latitudes using IRTF-TEXES measurements recorded on March 5-6, 2025. Using radiative transfer software to…

Jupiters south polar region was observed by JWST Mid Infrared Instrument in December 2022. We used the Medium Resolution Spectrometer mode to provide new information about Jupiters South Polar stratosphere. The southern auroral region was…

Recent work by Sromovsky et al. (2017, Icarus 291, 232-244) suggested that all red colour in Jupiter's atmosphere could be explained by a single colour-carrying compound, a so-called 'universal chromophore'. We tested this hypothesis on…

Earth and Planetary Astrophysics · Physics 2019-12-13 Ashwin S. Braude , Patrick G. J. Irwin , Glenn S. Orton , Leigh N. Fletcher

Multi-band phase variations in principle allow us to infer the longitudinal temperature distributions of planets as a function of height in their atmospheres. For example, 3.6 micron emission originates from deeper layers of the atmosphere…

Earth and Planetary Astrophysics · Physics 2017-12-27 Ian Dobbs-Dixon , Nicolas B. Cowan

Reflected sunlight observations from the Ultraviolet Spectrograph (UVS) on the Juno spacecraft were used to study the distribution of acetylene (C$_2$H$_2$) at Jupiter's south pole. We find that the shape of the C$_2$H$_2$ absorption…

We report observations of the high (R$\sim$18000) and medium (R$\sim$5900) resolution, near-infrared spectra of Jupiter's polar regions with the GNIRS instrument at the Gemini North telescope. The observations correspond to the area of main…

Earth and Planetary Astrophysics · Physics 2017-05-24 L. Kedziora-Chudczer , D. V. Cotton , D. J. Kedziora , J. Bailey

Oxygen is the most common element after hydrogen and helium in Jupiter's atmosphere, and may have been the primary condensable (as water ice) in the protoplanetary disk. Prior to the Juno mission, in situ measurements of Jupiter's water…

Observations of ultra-hot Jupiters offer an unprecedented opportunity to study the physics of some of the most extreme planetary atmospheres known. With exceedingly high amounts of irradiation blasting their upper atmospheres, ultra-hot…

Earth and Planetary Astrophysics · Physics 2026-02-04 Stefan Pelletier , Daniel Kitzmann , Valentina Vaulato , Ana Rita Costa Silva , Michal Steiner , David Ehrenreich

Jupiter's deep abundances help to constrain the formation history of the planet and the environment of the protoplanetary nebula. Juno recently measured Jupiter's deep oxygen abundance near the equator to be 2.2$_{-2.1}^{+3.9}$ times the…

Earth and Planetary Astrophysics · Physics 2023-05-24 Thibault Cavalié , Jonathan Lunine , Olivier Mousis

The polar regions of Jupiter host a myriad of dynamically interesting phenomena including vortex configurations, folded-filamentary regions (FFRs), and chaotic flows. Juno observations have provided unprecedented views of the high…

Earth and Planetary Astrophysics · Physics 2022-06-20 Ali Hyder , Wladimir Lyra , Nancy Chanover , Raúl Morales-Juberías , Jason Jackiewicz

We present a computationally efficient 1-D seasonal radiative model, with convective adjustment, of Jupiter's atmosphere. Our model takes into account radiative forcings from the main hydrocarbons (methane, ethane, acetylene), ammonia,…

Earth and Planetary Astrophysics · Physics 2020-11-13 Sandrine Guerlet , Aymeric Spiga , Thierry Fouchet , Hugues Delattre

In anticipation of new observational results for Jupiter's axial moment of inertia and gravitational zonal harmonic coefficients from the forthcoming Juno orbiter, we present a number of preliminary Jupiter interior models. We combine…

Earth and Planetary Astrophysics · Physics 2016-04-06 W. B. Hubbard , B. Militzer

Ultrahot Jupiters are a type of gaseous exoplanet that orbit extremely close to their host star, resulting in significantly high equilibrium temperatures. In recent years, high-resolution emission spectroscopy has been broadly employed in…

Since its discovery in the aurorae of Jupiter ~30 years ago, the H$_{3}^{+}$ ion has served as an invaluable probe of giant planet upper atmospheres. However, the vast majority of monitoring of planetary H$_{3}^{+}$ radiation has followed…

Earth and Planetary Astrophysics · Physics 2021-11-10 L. Moore , H. Melin , J. O'Donoghue , T. Stallard , J. Moses , M. Galand , S. Miller , C. Schmidt

A growing number of directly-imaged companions have been recently characterised, with robust constraints on carbon-to-oxygen ratios and even isotopic ratios. Many companions and isolated targets have also shown spectral variability. In this…

Hot Jupiters are among the best-studied exoplanets, but it is still poorly understood how their chemical composition and cloud properties vary with longitude. Theoretical models predict that clouds may condense on the nightside and that…

Earth and Planetary Astrophysics · Physics 2024-01-25 Taylor J. Bell , Nicolas Crouzet , Patricio E. Cubillos , Laura Kreidberg , Anjali A. A. Piette , Michael T. Roman , Joanna K. Barstow , Jasmina Blecic , Ludmila Carone , Louis-Philippe Coulombe , Elsa Ducrot , Mark Hammond , João M. Mendonça , Julianne I. Moses , Vivien Parmentier , Kevin B. Stevenson , Lucas Teinturier , Michael Zhang , Natalie M. Batalha , Jacob L. Bean , Björn Benneke , Benjamin Charnay , Katy L. Chubb , Brice-Olivier Demory , Peter Gao , Elspeth K. H. Lee , Mercedes López-Morales , Giuseppe Morello , Emily Rauscher , David K. Sing , Xianyu Tan , Olivia Venot , Hannah R. Wakeford , Keshav Aggarwal , Eva-Maria Ahrer , Munazza K. Alam , Robin Baeyens , David Barrado , Claudio Caceres , Aarynn L. Carter , Sarah L. Casewell , Ryan C. Challener , Ian J. M. Crossfield , Leen Decin , Jean-Michel Désert , Ian Dobbs-Dixon , Achrène Dyrek , Néstor Espinoza , Adina D. Feinstein , Neale P. Gibson , Joseph Harrington , Christiane Helling , Renyu Hu , Nicolas Iro , Eliza M. -R. Kempton , Sarah Kendrew , Thaddeus D. Komacek , Jessica Krick , Pierre-Olivier Lagage , Jérémy Leconte , Monika Lendl , Neil T. Lewis , Joshua D. Lothringer , Isaac Malsky , Luigi Mancini , Megan Mansfield , Nathan J. Mayne , Thomas Mikal-Evans , Karan Molaverdikhani , Nikolay K. Nikolov , Matthew C. Nixon , Enric Palle , Dominique J. M. Petit dit de la Roche , Caroline Piaulet , Diana Powell , Benjamin V. Rackham , Aaron D. Schneider , Maria E. Steinrueck , Jake Taylor , Luis Welbanks , Sergei N. Yurchenko , Xi Zhang , Sebastian Zieba

The population of hot Jupiters is extremely diverse, with large variations in their irradiation, period, gravity and chemical composition. To understand the intrinsic planet diversity through the observed population level trends, we explore…

Earth and Planetary Astrophysics · Physics 2024-04-16 Alexander Roth , Vivien Parmentier , Mark Hammond