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The atmosphere of Titan in late northern summer from JWST and Keck observations

  • Conor A. Nixon
  • , Bruno Bézard
  • , Thomas Cornet
  • , Brandon Park Coy
  • , Imke de Pater
  • , Maël Es-Sayeh
  • , Heidi B. Hammel
  • , Emmanuel Lellouch
  • , Nicholas A. Lombardo
  • , Manuel López-Puertas
  • , Juan M. Lora
  • , Pascal Rannou
  • , Sébastien Rodriguez
  • , Nicholas A. Teanby
  • , Elizabeth P. Turtle
  • , Richard K. Achterberg
  • , Carlos Alvarez
  • , Ashley G. Davies
  • , Katherine de Kleer
  • , Greg Doppmann
  • Leigh N. Fletcher, Alexander G. Hayes, Bryan J. Holler, Patrick G.J. Irwin, Carolyn Jordan, Oliver R.T. King, Nicholas W. Kutsop, Theresa C. Marlin, Henrik Melin, Stefanie N. Milam, Edward M. Molter, Luke Moore, Yaniss Nyffenegger-Péré, James O’Donoghue, John O’Meara, Scot C.R. Rafkin, Michael T. Roman, Arina Rostopchina, Naomi Rowe-Gurney, Carl Schmidt, Judy Schmidt, Christophe Sotin, Tom S. Stallard, John A. Stansberry, Robert A. West

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

12 Citas (Scopus)

Resumen

Saturn’s moon Titan undergoes a long annual cycle of 29.45 Earth years. Titan’s northern winter and spring were investigated in detail by the Cassini–Huygens spacecraft (2004–2017), but the northern summer season remains sparsely studied. Here we present new observations from the James Webb Space Telescope (JWST) and Keck II telescope made in 2022 and 2023 during Titan’s late northern summer. Using JWST’s mid-infrared instrument, we spectroscopically detected the methyl radical, the primary product of methane break-up and key to the formation of ethane and heavier molecules. Using the near-infrared spectrograph onboard JWST, we detected several non-local thermodynamic equilibrium CO and CO2 emission bands, which allowed us to measure these species over a wide altitude range. Lastly, using the near-infrared camera onboard JWST and Keck II, we imaged northern hemisphere tropospheric clouds evolving in altitude, which provided new insights and constraints on seasonal convection patterns. These observations pave the way for new observations and modelling of Titan’s climate and meteorology as it progresses through the northern fall equinox, when its atmosphere is expected to show notable seasonal changes.

Idioma originalInglés
Páginas (desde-hasta)969-981
Número de páginas13
PublicaciónNature Astronomy
Volumen9
N.º7
DOI
EstadoPublicada - jul 2025
Publicado de forma externa

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. ODS 13: Acción por el clima
    ODS 13: Acción por el clima

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