instrumentation: high angular resolution; planets and satellites:; atmospheres; planets and satellites: terrestrial planets
Abstract :
[en] NASA is engaged in planning for a Habitable Worlds Observatory (HabWorlds ), a coronagraphic space mission to detect rocky planets in habitable zones and establish their habitability. Surface liquid water is central to the definition of planetary habitability. Photometric and polarimetric phase curves of starlight reflected by an exoplanet can reveal ocean glint, rainbows, and other phenomena caused by scattering by clouds or atmospheric gas. Direct imaging missions are optimized for planets near quadrature, but HabWorlds ' coronagraph may obscure the phase angles where such optical features are strongest. The range of accessible phase angles for a given exoplanet will depend on the planet's orbital inclination and/or the coronagraph's inner working angle (IWA). We use a recently created catalog relevant to HabWorlds of 164 stars to estimate the number of exo-Earths that could be searched for ocean glint, rainbows, and polarization effects due to Rayleigh scattering. We find that the polarimetric Rayleigh scattering peak is accessible in most of the exo-Earth planetary systems. The rainbow due to water clouds at phase angles of ~20<SUP>○</SUP> - 60<SUP>○</SUP> would be accessible with HabWorlds for a planet with an Earth equivalent instellation in ~46 systems, while the ocean glint signature at phase angles of ~130<SUP>○</SUP> - 170<SUP>○</SUP> would be accessible in ~16 systems, assuming an IWA = 62 mas (3λ/D). Improving the IWA = 41 mas (2λ/D) increases accessibility to rainbows and glints by factors of approximately 2 and 3, respectively. By observing these scattering features, HabWorlds could detect a surface ocean and water cycle, key indicators of habitability.
Research Center/Unit :
STAR - Space sciences, Technologies and Astrophysics Research - ULiège
Disciplines :
Space science, astronomy & astrophysics
Author, co-author :
Vaughan, Sophia R.; University of Oxford, Department of Astrophysics
Gebhard, Timothy D.; Max-Planck-Institute for Intelligent Systems, Tubingen, -
Bott, Kimberly; University of California, Riverside, Department of Earth Sciences, -, -
Casewell, Sarah L.; Centre for Exoplanet Research, School of Physics and Astronomy, University of Leicester, University Road, Leicester, LE1 7RH, UK
Cowan, Nicolas B.; Department of Earth and Planetary Sciences and Department of Physics, McGill University, 3600 rue University, Montréal, QC, H3A 2T8, Canada
Doelman, David S.; Leiden Observatory, Netherlands Institute for Space Research
Kenworthy, Matthew; Leiden Observatory
Mazoyer, Johan; Observatoire de Paris, Laboratoire d'Etudes Spatiales et d'Instrumentation en Astrophysique
Millar-Blanchaer, Maxwell A.; University of California, Santa Barbara, Department of Physics and Astronomy
Trees, Victor J. H.; Technical University of Delft, Netherlands, Royal Dutch Meteor Society
Stam, Daphne M.; Technical University of Delft, Netherlands
Absil, Olivier ; Université de Liège - ULiège > Département d'astrophysique, géophysique et océanographie (AGO)
Altinier, Lisa; Aix Marseille Université, CNRS, CNES, LAM, 38 rue Frédéric Joliot-Curie, 13388 Cedex 13, Marseille, France
Baudoz, Pierre; Observatoire de Paris, Laboratoire d'Etudes Spatiales et d'Instrumentation en Astrophysique
Belikov, Ruslan; NASA Ames Research Center, Bldg. 245, Moffett Field, USA
Bidot, Alexis; Université Grenoble Alpes, CNRS, IPAG, 25 Av. des Martyrs, 38000 Grenoble, France
Birkby, Jayne L.; University of Oxford, Department of Astrophysics
Bonse, Markus J.; ETH Zurich, Institute for Particle Physics and Astrophysics, Wolfgang-Pauli-Str 27, 8092 Zurich, Switzerland
Brandl, Bernhard; Leiden Observatory
Carlotti, Alexis; Université Grenoble Alpes, CNRS, IPAG, 25 Av. des Martyrs, 38000 Grenoble, France
Choquet, Elodie; Aix Marseille Université, CNRS, CNES, LAM, 38 rue Frédéric Joliot-Curie, 13388 Cedex 13, Marseille, France
van Dam, Dirk; Leiden Observatory
Desai, Niyati; California Institute of Technology, Division of Physics, Mathematics and Astronomy
Fogarty, Kevin; NASA Ames Research Center, Bldg. 245, Moffett Field, USA
Fowler, J.; University of California, Santa Cruz, Department of Astronomy and Astrophysics
van Gorkom, Kyle; University of Arizona, Department of Astronomy and Steward Observatory
Gutierrez, Yann; Observatoire de Paris, Laboratoire d'Etudes Spatiales et d'Instrumentation en Astrophysique, -, -
Guyon, Olivier; University of Arizona, Department of Astronomy and Steward Observatory, -, University of Arizona, College of Optical Sciences, -
Haffert, Sebastiaan Y.; University of Arizona, Department of Astronomy and Steward Observatory
Herscovici-Schiller, Olivier; DTIS, ONERA, Université Paris Saclay, 6 Chemin de la Vauve aux Granges, 91123 Palaiseau, France
Hours, Adrien; Université Grenoble Alpes, CNRS, IPAG, 25 Av. des Martyrs, 38000 Grenoble, France
Juanola-Parramon, Roser; NASA Goddard Space Flight Center, Maryland, University of Maryland, Baltimore County
Kleisioti, Evangelia; Leiden Observatory, Technical University of Delft, Netherlands
König, Lorenzo ; Université de Liège - ULiège > Département d'astrophysique, géophysique et océanographie (AGO) > Planetary & Stellar systems Imaging Laboratory
van Kooten, Maaike; National Research Council Canada, Herzberg Astronomy and Astrophysics Research Center, 5071 W Saanich Rd, Victoria, B.C., Canada
Krasteva, Mariya; European Space Research and Technology Centre
Laginja, Iva; Observatoire de Paris, Laboratoire d'Etudes Spatiales et d'Instrumentation en Astrophysique
Landman, Rico; Leiden Observatory
Leboulleux, Lucie; Université Grenoble Alpes, CNRS, IPAG, 25 Av. des Martyrs, 38000 Grenoble, France
Mouillet, David; Université Grenoble Alpes, CNRS, IPAG, 25 Av. des Martyrs, 38000 Grenoble, France
N'Diaye, Mamadou; Observatoire de la Cote d'Azur, France
Por, Emiel H.; Space Telescope Science Institute, Baltimore, Maryland
Pueyo, Laurent; Space Telescope Science Institute, Baltimore, Maryland
Emde C., Buras-Schnell R., Sterzik M., Bagnulo S., 2017, A&A, 605, A2
García Muñoz A., Pérez-Hoyos S., Sánchez-Lavega A., 2014, A&A, 566, L1
Gaudi B. S. et al., 2020, preprint (arXiv:2001.06683)
Hansen J. E., Hovenier J. W., 1974, J. Atmos. Sci., 31, 1137
Harris C. R. et al., 2020, Nature, 585, 357
Hunter J. D., 2007, Comput. Sci. Eng., 9, 90
Karalidi T., Stam D. M., Hovenier J. W., 2011, A&A, 530, A69
Karalidi T., Stam D. M., Hovenier J. W., 2012, A&A, 548, A90
Kasting J. F., Whitmire D. P., Reynolds R. T., 1993, Icarus, 101, 108
Kipping D. M., 2013, MNRAS, 434, L51
Kopparapu R. K. et al., 2013, ApJ, 765, 131
Kopparla P., Natraj V., Crisp D., Bott K., Swain M. R., Yung Y. L., 2018, AJ, 156, 143
Luger R., Bedell M., Foreman-Mackey D., Crossfield I. J. M., Zhao L. L., Hogg D. W., 2021, preprint (arXiv:2110.06271)
Lustig-Yaeger J., Meadows V. S., Lincowski A. P., 2019, AJ, 158, 27
McCullough P. R., 2006, preprint(astro–ph/0610518)
Mahapatra G., Abiad F., Rossi L., Stam D. M., 2023, A&A, 671, A165
Murray C. D., Correia A. C. M., 2010, Seager S.ed. Exoplanets. Univ. Arizona Press, Tucson, p. 15
National Academies of Sciences, Engineering, and Medicine, 2021, Pathways to Discovery in Astronomy and Astrophysics for the 2020s. The National Academies Press, Washington,
Pallé E. et al., 2003, J. Geophys. Res. D., 108, 4710
Petroff M. A., 2021, preprint (arXiv:2107.02270)
Petrova E. V., 2018, Icarus, 306, 163
Qiu J. et al., 2003, J. Geophys. Res. Atmos., 108, 4709
Robinson T. D. et al., 2011, Astrobiology, 11, 393
Robinson T. D., Meadows V. S., Crisp D., 2010, ApJ, 721, L67
Russell H. N., 1916, ApJ, 43, 173
Ryan D. J., Robinson T. D., 2022, Planet. Sci. J., 3, 33
Stam D. M., 2008, A&A, 482, 989
Stark C. C. et al., 2019, J. Astron. Telesc. Instrum. Syst., 5, 024009
Stephan K. et al., 2010, Geophys. Res. Lett., 37, L07104
Sterzik M. F., Bagnulo S., Stam D. M., Emde C., Manev M., 2019, A&A, 622, A41
Takahashi J., Itoh Y., Matsuo T., Oasa Y., Bach Y. P., Ishiguro M., 2021, A&A, 653, A99
The LUVOIR Team, 2019, preprint (arXiv:1912.06219)
Trees V. J. H., Stam D. M., 2019, A&A, 626, A129
Trees V. J. H., Stam D. M., 2022, A&A, 664, A172
Virtanen P. et al., 2020, Nat. Methods, 17, 261
Williams D. M., Gaidos E., 2008, Icarus, 195, 927
Zakovryashin A. V., Prigarin S. M., 2020, Russ. J. Numer. Anal. Math. Model., 35, 367
Zellner B., 1973, Icarus, 18, 661
Zugger M. E., Kasting J. F., Williams D. M., Kane T. J., Philbrick C. R., 2010, ApJ, 723, 1168
Zugger M. E., Kasting J. F., Williams D. M., Kane T. J., Philbrick C. R., 2011, ApJ, 739, 12