Exoplanet science with a space-based mid-infrared nulling interferometer

被引:29
|
作者
Quanz, Sascha P. [1 ]
Kammerer, Jans [2 ]
Defrere, Danis [3 ]
Absil, Olivier [3 ]
Glauser, Adrian M. [1 ]
Kitzmann, Daniel [4 ]
机构
[1] Swiss Fed Inst Technol, Inst Particle Phys & Astrophys, Wolfgang Pauli Str 27, CH-8093 Zurich, Switzerland
[2] Australian Natl Univ, Res Sch Astron & Astrophys, Canberra, ACT 2611, Australia
[3] Univ Liege, Space Sci Tech & Astrophys Res STAR Inst, 19c Allee Six Aout,Bat B5c, B-4000 Liege, Belgium
[4] Univ Bern, CSH, Gesell Str 6 G6, CH-3012 Bern, Switzerland
关键词
exoplanets; interferometry; space; high-spatial resolution; infrared; habitability; TRAPPIST-1;
D O I
10.1117/12.2312051
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
One of the long-term goals of exoplanet science is the (atmospheric) characterization of a large sample (>100) of terrestrial planets to assess their potential habitability and overall diversity. Hence, it is crucial to quantitatively evaluate and compare the scientific return of various mission concepts. Here we discuss the exoplanet yield of a space-based mid-infrared (MIR) nulling interferometer. We use Monte-Carlo simulations, based on the observed planet population statistics from the Kepler mission, to quantify the number and properties of detectable exoplanets (incl. potentially habitable planets) and we compare the results to those for a large aperture optical/NIR space telescope. We investigate how changes in the underlying technical assumptions (sensitivity and spatial resolution) impact the results and discuss scientific aspects that influence the choice for the wavelength coverage and spectral resolution. Finally, we discuss the advantages of detecting exoplanets at MIR wavelengths, summarize the current status of some key technologies, and describe what is needed in terms of further technology development to pave the road for a space-based MIR nulling interferometer for exoplanet science.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Mission Design of an Aperture-Synthetic Interferometer System for Space-Based Exoplanet Exploration
    Jia, Feida
    Li, Xiangyu
    Huo, Zhuoxi
    Qiao, Dong
    [J]. SPACE: SCIENCE & TECHNOLOGY, 2022, 2022
  • [22] Exoplanet detection yield of a space-based Bracewell interferometer from small to medium satellites
    Dandumont, Colin
    Defrere, Denis
    Kammerer, Jens
    Absil, Olivier
    Quanz, Sascha P.
    Loicq, Jerome
    [J]. JOURNAL OF ASTRONOMICAL TELESCOPES INSTRUMENTS AND SYSTEMS, 2020, 6 (03)
  • [23] Breadboarding an achromatic phase shifter for mid-infrared nulling interferometry
    Launhardt, R.
    [J]. OPTICAL AND INFRARED INTERFEROMETRY, 2008, 7013
  • [24] Space-based intensity interferometer
    Klein, I.
    Guelman, M.
    Lipson, S. G.
    [J]. APPLIED OPTICS, 2007, 46 (20) : 4237 - 4247
  • [25] Graphene-based mid-infrared plasmonic isolator with multimode interferometer
    Heidari, Mohsen
    Ahmadi, Vahid
    [J]. OPTICS LETTERS, 2020, 45 (20) : 5764 - 5767
  • [26] An overview of the mid-infrared spectro-interferometer MATISSE: science, concept, and current status
    Matter, A.
    Lopez, B.
    Antonelli, P.
    Lehmitz, M.
    Bettonvil, F.
    Beckmann, U.
    Lagarde, S.
    Jaffe, W.
    Petrov, R. G.
    Betio, P.
    Millour, F.
    Robbe-Dubois, S.
    Glindemann, A.
    Bristow, P.
    Schoeller, M.
    Lanz, T.
    Henning, F.
    Weigelt, G.
    Heininger, M.
    Morel, S.
    Cruzalebes, P.
    'Meisenheimer, K.
    Hafferbert, R.
    Wolf, S.
    Bresson, Y.
    Agocs, T.
    Allouche, F.
    Augereau, J. -C.
    Avila, G.
    Ballet, C.
    Behrend, J.
    Van Belle, G.
    Berger, J. -P.
    van Bockel, R.
    Bourget, P.
    Brast, R.
    Clausse, J. -M.
    Connot, C.
    Conzelmann, R.
    Csepany, G.
    Danchi, W. C.
    Delbo, M.
    Dominik, C.
    van Duin, A.
    Elswijk, E.
    Fantei, Y.
    Finger, G.
    Gabasch, A.
    Gonte, F.
    Graser, U.
    [J]. OPTICAL AND INFRARED INTERFEROMETRY AND IMAGING V, 2016, 9907
  • [27] Science with the space-based interferometer eLISA: Supermassive black hole binaries
    Klein, Antoine
    Barausse, Enrico
    Sesana, Alberto
    Petiteau, Antoine
    Berti, Emanuele
    Babak, Stanislav
    Gair, Jonathan
    Aoudia, Sofiane
    Hinder, Ian
    Ohme, Frank
    Wardell, Barry
    [J]. PHYSICAL REVIEW D, 2016, 93 (02)
  • [28] MIDI, the 10 μm interferometer of the VLT:: A step towards mid-infrared interferometry in space
    Perrin, G
    Leinert, C
    Graser, U
    Waters, LBFM
    Lopez, B
    [J]. DARWIN AND ASTRONOMY, PROCEEDINGS: THE INFRARED SPACE INTERFEROMETER, 2000, 451 : 57 - 61
  • [29] Preparatory Studies for a Mid-Infrared Nulling Interferometry Experiment at Cryogenic Conditions
    Gheorghe, Adrian
    Glauser, Adrian M.
    Ergenzinger, Klaus J.
    Quanz, Sascha P.
    Defrere, Denis
    Kuhn, Jonas
    [J]. OPTICAL AND INFRARED INTERFEROMETRY AND IMAGING VII, 2020, 11446
  • [30] Precision astrometry with a space-based interferometer
    Unwin, Stephen C.
    Shao, Michael
    Edberg, Stephen J.
    [J]. OPTICAL AND INFRARED INTERFEROMETRY, 2008, 7013