Discovery and spectroscopy of the young jovian planet 51 Eri b with the Gemini Planet Imager
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Macintosh, B.
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Graham, J. R.
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Barman, T.
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Rosa, R. De
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Konopacky, Q.
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Marley, M.
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Marois, C.
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Nielsen, E.
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Pueyo, L.
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Rajan, A.
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Rameau, J.
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Saumon, D.
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Wang, J.
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Patience, J.
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Ammons, M.
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Arriaga, P.
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Artigau, E.
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Beckwith, S.
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Brewster, J.
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Bruzzone, S.
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Bulger, J.
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Burningham, B.
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Burrows, A.
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Chen, C.
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Chiang, E.
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Chilcote, J. K.
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Dawson, R.
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Dong, R.
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Doyon, R.
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Draper, Z.
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Duchêne, G.
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Esposito, T.
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Fabrycky, Daniel
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Fitzgerald, M.
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Follette, K.
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Fortney, J.
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Gerard, B.
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Goodsell, S.
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Greenbaum, A.
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Hibon, P.
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Hinkley, S.
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Cotten, T.
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Hung, L.
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Ingraham, P.
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Johnson-Groh, M.
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Kalas, P.
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Lafreniere, D.
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Larkin, J.
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Lee, J.
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Line, M.
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Long, D.
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Maire, J.
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Marchis, F.
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Matthews, B.
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Max, C.
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Metchev, S.
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Millar-Blanchaer, M.
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Mittal, T.
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Morley, C.
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Morzinski, K.
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Murray, R.
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Oppenheimer, R.
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Palmer, D.
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Patel, R.
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Perrin, M.
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Poyneer, L.
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Rafikov, R.
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Rantakyrö, F.
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Rice, E.
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Rojo Rubke, Patricio
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Rudy, A.
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Ruffio, J.
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Ruiz González, María Teresa
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Sadakuni, N.
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Saddlemyer, L.
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Salama, M.
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Savransky, D.
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Schneider, A.
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Sivaramakrishnan, A.
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Song, I.
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Soummer, R.
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Thomas, S.
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Vasisht, G.
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Wallace, J.
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Ward, K.
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Wiktorowicz, S.
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Wolff, S.
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Zuckerman, B.
Admission date
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2015-12-30T11:39:54Z
Available date
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2015-12-30T11:39:54Z
Publication date
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2015-10-02
Cita de ítem
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Science 2 October 2015: Vol. 350 no. 6256 pp. 64-67
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Identifier
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DOI: 10.1126/science.aac5891
Identifier
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https://repositorio.uchile.cl/handle/2250/136097
General note
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Artículo de publicación ISI
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Abstract
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Directly detecting thermal emission from young extrasolar planets allows measurement of their atmospheric compositions and luminosities, which are influenced by their formation mechanisms. Using the Gemini Planet Imager, we discovered a planet orbiting the ~20-million-year-old star 51 Eridani at a projected separation of 13 astronomical units. Near-infrared observations show a spectrum with strong methane and water-vapor absorption. Modeling of the spectra and photometry yields a luminosity (normalized by the luminosity of the Sun) of 1.6 to 4.0 × 10−6 and an effective temperature of 600 to 750 kelvin. For this age and luminosity, “hot-start” formation models indicate a mass twice that of Jupiter. This planet also has a sufficiently low luminosity to be consistent with the “cold-start” core-accretion process that may have formed Jupiter.
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Lenguage
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en
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Publisher
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American Association for the Advancement of Science