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Ground-breaking exoplanet science with the ANDES spectrograph at the ELT

  • Enric Palle
  • , Katia Biazzo
  • , Emeline Bolmont
  • , Paul Mollière
  • , Katja Poppenhaeger
  • , Jayne Birkby
  • , Matteo Brogi
  • , Gael Chauvin
  • , Andrea Chiavassa
  • , Jens Hoeijmakers
  • , Emmanuel Lellouch
  • , Christophe Lovis
  • , Roberto Maiolino
  • , Lisa Nortmann
  • , Hannu Parviainen
  • , Lorenzo Pino
  • , Martin Turbet
  • , Jesse Weder
  • , Simon Albrecht
  • , Simone Antoniucci
  • Susana C. Barros, Andre Beaudoin, Bjorn Benneke, Isabelle Boisse, Aldo S. Bonomo, Francesco Borsa, Alexis Brandeker, Wolfgang Brandner, Lars A. Buchhave, Anne Laure Cheffot, Robin Deborde, Florian Debras, Rene Doyon, Paolo Di Marcantonio, Paolo Giacobbe, Jonay I. González Hernández, Ravit Helled, Laura Kreidberg, Pedro Machado, Jesus Maldonado, Alessandro Marconi, B. L.Canto Martins, Adriano Miceli, Christoph Mordasini, Mamadou N’Diaye, Andrzej Niedzielski, Brunella Nisini, Livia Origlia, Celine Peroux, Alexander G.M. Pietrow, Enrico Pinna, Emily Rauscher, Sabine Reffert, Cristina Rodríguez-López, Philippe Rousselot, Nicoletta Sanna, Nuno C. Santos, Adrien Simonnin, Alejandro Suárez Mascareño, Alessio Zanutta, Maria Rosa Zapatero-Osorio, Mathias Zechmeister
  • Instituto de Astrofisica de Canarias
  • Research Unit; CIBERNED and Universidad de La Laguna
  • Osservatorio Astronomico di Roma
  • Université de Genève
  • Centre sur la Vie dans l’Univers
  • Max-Planck-Institut für Astronomie
  • Astrophysikalisches Institut Potsdam
  • University of Potsdam
  • University of Oxford
  • University of Turin
  • Osservatorio Astronomico di Torino
  • Université Côte d’Azur
  • Lund Observatory
  • Sorbonne Univ.
  • University of Geneva
  • University of Cambridge
  • Georg-August-Universität Göttingen
  • Osservatorio Astrofisico Di Arcetri
  • Laboratoire d'Astrophysique de Bordeaux
  • University of Bern
  • Aarhus University
  • Ipatimup Diagnósticos
  • Universite de Montreal
  • LAM
  • INAF
  • Stockholm University
  • Technical University of Denmark
  • Sorbonne Université
  • IRAP/CNRS
  • INAF-Trieste
  • University of Zurich
  • Tapada da Ajuda
  • Faculdade de Ciências, Universidade de Lisboa
  • Istituto di Astrofisica e Planetologia Spaziali (IAPS)
  • University of Florence
  • The Federal University of Rio Grande do Norte
  • Nicolaus Copernicus University
  • Osservatorio di Astrofisica e Scienza dello Spazio di Bologna
  • European Southern Observatory
  • University of Michigan, Ann Arbor
  • Landessternwarte Heidelberg
  • Institut UTINAM - Univers, Temps-fréquence, Interfaces, Nanostructures, Atmosphère et environnement, Molécules
  • ESAC campus

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

In the past decade the study of exoplanet atmospheres at high-spectral resolution, via transmission/emission spectroscopy and cross-correlation techniques for atomic/molecular mapping, has become a powerful and consolidated methodology. The current limitation is the signal-to-noise ratio that one can obtain during a planetary transit, which is in turn ultimately limited by telescope size. This limitation will be overcome by ANDES, an optical and near-infrared high-resolution spectrograph for the Extremely Large Telescope, which is currently in Phase B development. ANDES will be a powerful transformational instrument for exoplanet science. It will enable the study of giant planet atmospheres, allowing not only an exquisite determination of atmospheric composition, but also the study of isotopic compositions, dynamics and weather patterns, mapping the planetary atmospheres and probing atmospheric formation and evolution models. The unprecedented angular resolution of ANDES, will also allow us to explore the initial conditions in which planets form in proto-planetary disks. The main science case of ANDES, however, is the study of small, rocky exoplanet atmospheres, including the potential for biomarker detections, and the ability to reach this science case is driving its instrumental design. Here we discuss our simulations and the observing strategies to achieve this specific science goal. Since ANDES will be operational at the same time as NASA’s JWST and ESA’s ARIEL missions, it will provide enormous synergies in the characterization of planetary atmospheres at high and low spectral resolution. Moreover, ANDES will be able to probe for the first time the atmospheres of several giant and small planets in reflected light. In particular, we show how ANDES will be able to unlock the reflected light atmospheric signal of a golden sample of nearby non-transiting habitable zone earth-sized planets within a few tenths of nights, a scientific objective that no other currently approved astronomical facility will be able to reach.

langue originaleAnglais
Numéro d'article29
journalExperimental Astronomy
Volume59
Numéro de publication3
Les DOIs
étatPublié - 1 juin 2025

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