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A European vision for a polar large telescope project

  • Lyu Abe
  • , Nicolas Epchtein
  • , Wolfgang Ansorge
  • , Stefania Argentini
  • , Ian Bryson
  • , Marcel Carbillet
  • , Gavin Dalton
  • , Christine David
  • , Igor Esau
  • , Christophe Genthon
  • , Maud Langlois
  • , Thibault Le Bertre
  • , Rachid Lemrani
  • , Brice Le Roux
  • , Gianpietro Marchiori
  • , Djamel Mékarnia
  • , Joachim Montnacher
  • , Gil Moretto
  • , Philippe Prugniel
  • , Jean Pierre Rivet
  • Eric Ruch, Charling Tao, André Tilquin, Isabelle Vauglin
  • Université de Nice
  • RAMS-CON Management Consultants
  • Institute of Atmospheric Sciences and Climate, CNR, ISAC
  • UKTC
  • RAL
  • Institut Polaire Français (IPEV)
  • Nansen Environmental and Remote Sensing Center
  • UJF
  • IGFL, Université de Lyon, Université Lyon 1
  • LERMA, Observatoire de Paris
  • Université Paris-Sud
  • LAM
  • EIE Group
  • Fraunhofer Institute (IPA)
  • Institut de Physique des 2 Infinis de Lyon
  • SAGEM-REOSC
  • Tsinghua University

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1 Citation (Scopus)

Résumé

The Polar Large Telescope (PLT) project is primarily aimed at undertaking large, wide band synoptic astronomical surveys in the infrared in order to provide critical data to the forthcoming generation of observational facilities such as ALMA, JWST, LSST and the E-ELT, and to complement the observations obtained with them. Sensitive thermal IR surveys beyond 2.3 μm cannot be carried out from any existing ground based observatory and the Antarctic Plateau is the only place on the ground where it can be envisaged, thanks to its unique atmospheric and environmental properties, such as the turbulence profile (image quality), the low opacity and the reduced thermal background emission of the sky. These unique conditions enable high angular resolution wide field surveys in the near thermal infrared (2.3-5 μm). This spectral range is particularly well suited to tackling key astrophysical questions such as: i) investigating the nature of the distant universe, the first generation of stars and the latest stages of stellar evolution, ii) understanding transient phenomena such as gamma ray-bursts and Type Ia supernovae, iii) increasing our knowledge of extra-solar planets. Further instruments may broaden the expected science outcomes of such a 2-4 m class telescope especially for the characterization of galaxies at very large distance to provide new clues in the mysteries of dark matter and energy. Efforts will be made to merge this project with other comparable projects within an international consortium.

langue originaleAnglais
titreAstrophysics from Antarctica
rédacteurs en chefMichael G. Burton, Xiangqun Cui, Nicholas F. H. Tothill
Pages243-250
Nombre de pages8
EditionS288
Les DOIs
étatPublié - 1 août 2012
Modification externeOui

Série de publications

NomProceedings of the International Astronomical Union
nombreS288
Volume8
ISSN (imprimé)1743-9213
ISSN (Electronique)1743-9221

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