Colour changes of Jupiter’s Oval BA through microphysical modelling

Icarus Elsevier 459 (2026) 117239

Authors:

Asier Anguiano-Arteaga, Santiago Pérez-Hoyos, Agustín Sánchez-Lavega, Patrick GJ Irwin

Abstract:

Jupiter’s Oval BA undergoes recurrent colour changes whose physical origin remains uncertain. Radiative transfer retrievals indicate that these changes occur in the upper chromophore haze of the vortex annulus, around and above the 0.2–bar level, and are primarily associated with a decrease in optical depth, with no significant change in particle size or haze altitude. We apply a one-dimensional microphysical model to this haze layer, constrained by the retrieved aerosol properties of the red annulus in 2016 and the whiter annulus in 2020, and use it to reproduce the observed colour-change timescale of approximately 0.5 years. Our results indicate that this transition is best reproduced by changes in tropospheric vertical transport within a subsiding annulus, corresponding to preferred downwelling velocities of order 10−4–10−3 m s−1 at chromophore-bearing pressures. These small vertical velocities may help explain why no clear dynamical signature has yet been identified.

Atmospheric Reconnaissance of TRAPPIST-1 f with JWST NIRISS SOSS: No Evidence for the Transit Light Source Effect

The Astronomical Journal 172:4 (2026)

Authors:

Olivia Lim, René Doyon, Ryan J MacDonald, Étienne Artigau, Michael Radica, Mykhaylo Plotnykov, Alexandrine L’Heureux, Caroline Piaulet-Ghorayeb, Louis-Philippe Coulombe, David Lafrenière, Thomas J Fauchez, Martin Turbet, Diana Valencia, Loïc Albert, Laura Flagg, Björn Benneke, Neil J Cook, Pierre-Alexis Roy, Lisa Kaltenegger, Charles Cadieux, Nicolas B Cowan, Michaël Gillon, Romain Allart, Lisa Dang, Doug Johnstone, Stefan Pelletier, Jared Splinter, Jake Taylor

Abstract:

In just over 3 yr of operation, JWST has observed all seven planets of the TRAPPIST-1 system. The two innermost planets were found to have little to no atmosphere, barring the presence of high-altitude aerosols. Here we present the first JWST transit spectra of the habitable-zone exoplanet TRAPPIST-1 f, which were obtained with NIRISS SOSS over the course of five transits. At least one stellar flare occurred in each visit, but unlike observations of closer-in TRAPPIST-1 planets, no evidence for contamination of the transit spectra from unocculted stellar surface heterogeneities was found. This nondetection does not guarantee the absence of unocculted heterogeneities in all future transit observations of this planet, and it could be explained by the transit chord of TRAPPIST-1 f having properties similar to the average, out-of-transit, visible stellar hemisphere at the time of observation. The transit spectra exhibit slopes ranging from −365 ppm μm−1 down to 15 ppm μm−1, which we attribute to stellar variability, that is, flares and/or smaller-scale events. The visits least affected by flares rule out H2/He-dominated atmospheres with surface pressures higher than about 20 mbar at 95% confidence. For high-mean-molecular-mass atmospheres, the exact upper limits on surface pressures depend on the reduction pipeline and on the treatment of the residual slopes in the transit spectra.

Erratum: The Climates and Thermal Emission Spectra of Prime Nearby Temperate Rocky Exoplanet Targets (2025, ApJ, 984, 181)

The Astrophysical Journal American Astronomical Society 1006:2 (2026) 255

Authors:

Tobi Hammond, Thaddeus D Komacek, Ravi K Kopparapu, Thomas J Fauchez, Avi M Mandell, Eric T Wolf, Vincent Kofman, Stephen R Kane, Ted M Johnson, Anmol Desai, Giada Arney, Jaime S Crouse

The Roasting Marshmallows Program with IGRINS on Gemini South. V. Atmosphere of MASCARA-1 b Is Enriched in Refractory Elements

Astronomical Journal 172:2 (2026)

Authors:

K Kanumalla, MR Line, M Chiarella, M Brogi, PCB Smith, JA Sanchez, Y Chachan, J Lothringer, JP Wardenier, H Beltz, C Saffe, EK Deibert, MW Mansfield, S Pelletier, V Parmentier, YH Choi, S Ramkumar, AB Savel, L Welbanks, JL Bean, V Panwar, TA Silva, L Pino, Y Hayashi, D Lim, CX Lu, VM Kalari, T Močnik, MG Rawlings, H Oh, RJ Diaz, C Park, JJ Lee, S Kim, U Jeong, HI Lee, W Park, Y Yu, Y Kim, MY Chun, JS Oh, S Lee, JG Jang, BH Jang, HC Seong, HJ Kim, CB Brooks, GN Mace, H Lee, JM Good, DT Jaffe, KM Kim, IS Yuk, N Hwang, BG Park, H Kim, B Chinn, F Ramos, P Prado, J White, A Olivares, V Oyarzun, E Kurz, H Stecher, C Quiroz, I Arriagada, TL Hayward, H Suh, J Miller, S Xu, EP Farina, C Figura, A Stephens, B Miller, K Labrie, P Hirst, E Tapia, Z Hartmann

Abstract:

Ultrahot Jupiters (UHJs; Teq ≳ 2000 K) enable simultaneous detection of volatile (ice-forming) and refractory (rock-forming) elements in planetary atmospheres, providing a powerful diagnostic of planet formation and atmospheric processing. We present a comprehensive high-resolution cross-correlation spectroscopy analysis of the UHJ MASCARA-1 b (Teq ≈ 2600 K) using the IGRINS and IGRINS-2 spectrographs. We detect robust (signal-to-noise ratio > 4) signals from H2O, CO, OH, Fe i, Mg i, Ca i, and Ti i, marking the most complete atmospheric inventory of MASCARA-1 b to date. Using a chemically consistent atmospheric inference framework, we constrain elemental abundances to a typical precision of ≈0.2 dex, retrieving a solar atmospheric metallicity ([M/H]⊙ (Formula presented) =0.07−0.13+0.17 ≈1.2 × solar), a C/O ratio (C/O (Formula presented) =0.65−0.08+0.08 ) consistent with solar value (C/O = 0.59), an enhanced refractory abundance ([ (Formula presented) R /H]⊙= (Formula presented) 0.40−0.17+0.23≈2.5× solar; ≈3.8 × stellar), and a moderately supersolar refractory-to-volatile ratio ([ (Formula presented) R/V ]⊙ =  (Formula presented) 0.36−0.09+0.11 ≈ 2.3× solar). Comparison with formation models suggests that MASCARA-1 b most likely accreted material between the soot–H2O or H2O–CO snowlines (at 68% confidence). We additionally find stellar values for atmospheric Ti/Fe and Ca/Fe ratios (at 68% confidence). The Mg/Fe is also found to be consistent with stellar value at 95% confidence. Therefore, we do not find strong indication of nightside cold trapping in MASCARA-1 b. As homogeneous refractory-to-volatile measurements expand across the UHJ population, particularly with upcoming Extremely Large Telescopes, these diagnostics will enable statistically robust tests of emerging trends in giant planet formation and atmospheric evolution.

A Physically Driven Parameterisation of Multidimensional Atmospheres: Application to the JWST Phase Curve of WASP-121b

(2026)

Authors:

Yuanheng Yang, Guo Chen, Xianyu Tan, Thaddeus D Komacek, Xi Zhang, Thomas M Evans-Soma, Fei Yan, Chengzi Jiang, Fei Dai