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  The GJ 504 system revisited. Combining interferometric, radial velocity, and high contrast imaging data

Bonnefoy, M., Perraut, K., Lagrange, A.-.-M., Delorme, P., Vigan, A., Line, M., Rodet, L., Ginski, C., Mourard, D., Marleau, G.-.-D., Samland, M., Tremblin, P., Ligi, R., Cantalloube, F., Mollière, P., Charnay, B., Kuzuhara, M., Janson, M., Morley, C., Homeier, D., D'Orazi, V., Klahr, H., Mordasini, C., Lavie, B., Baudino, J.-.-L., Beust, H., Peretti, S., Musso Bartucci, A., Mesa, D., Bézard, B., Boccaletti, A., Galicher, R., Hagelberg, J., Desidera, S., Biller, B., Maire, A.-.-L., Allard, F., Borgniet, S., Lannier, J., Meunier, N., Desort, M., Alecian, E., Chauvin, G., Langlois, M., Henning, T., Mugnier, L., Mouillet, D., Gratton, R., Brandt, T., Mc Elwain, M., Beuzit, J.-.-L., Tamura, M., Hori, Y., Brandner, W., Buenzli, E., Cheetham, A., Cudel, M., Feldt, M., Kasper, M., Keppler, M., Kopytova, T., Meyer, M., Perrot, C., Rouan, D., Salter, G., Schmidt, T., Sissa, E., Zurlo, A., Wildi, F., Blanchard, P., De Caprio, V., Delboulbé, A., Maurel, D., Moulin, T., Pavlov, A., Rabou, P., Ramos, J., Roelfsema, R., Rousset, G., Stadler, E., Rigal, F., & Weber, L. (2018). The GJ 504 system revisited. Combining interferometric, radial velocity, and high contrast imaging data. Astronomy and Astrophysics, 618.

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アイテムのパーマリンク: https://hdl.handle.net/21.11116/0000-0005-CEC0-A 版のパーマリンク: https://hdl.handle.net/21.11116/0000-0005-CEC1-9
資料種別: 学術論文

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URL:
https://ui.adsabs.harvard.edu/abs/2018A&A...618A..63B (全文テキスト(全般))
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 作成者:
Bonnefoy, M.1, 著者
Perraut, K.1, 著者
Lagrange, A. -M.1, 著者
Delorme, P.1, 著者
Vigan, A.1, 著者
Line, M.1, 著者
Rodet, L.1, 著者
Ginski, C.1, 著者
Mourard, D.1, 著者
Marleau, G. -D.1, 著者
Samland, M.1, 著者
Tremblin, P.1, 著者
Ligi, R.1, 著者
Cantalloube, F.1, 著者
Mollière, P.1, 著者
Charnay, B.1, 著者
Kuzuhara, M.1, 著者
Janson, M.1, 著者
Morley, C.1, 著者
Homeier, D.1, 著者
D'Orazi, V.1, 著者Klahr, H.1, 著者Mordasini, C.1, 著者Lavie, B.1, 著者Baudino, J. -L.1, 著者Beust, H.1, 著者Peretti, S.1, 著者Musso Bartucci, A.1, 著者Mesa, D.1, 著者Bézard, B.1, 著者Boccaletti, A.1, 著者Galicher, R.1, 著者Hagelberg, J.1, 著者Desidera, S.1, 著者Biller, B.1, 著者Maire, A. -L.1, 著者Allard, F.1, 著者Borgniet, S.1, 著者Lannier, J.1, 著者Meunier, N.1, 著者Desort, M.1, 著者Alecian, E.1, 著者Chauvin, G.1, 著者Langlois, M.1, 著者Henning, T.1, 著者Mugnier, L.1, 著者Mouillet, D.1, 著者Gratton, R.1, 著者Brandt, T.1, 著者Mc Elwain, M.1, 著者Beuzit, J. -L.1, 著者Tamura, M.1, 著者Hori, Y.1, 著者Brandner, W.1, 著者Buenzli, E.1, 著者Cheetham, A.1, 著者Cudel, M.1, 著者Feldt, M.1, 著者Kasper, M.1, 著者Keppler, M.1, 著者Kopytova, T.1, 著者Meyer, M.1, 著者Perrot, C.1, 著者Rouan, D.1, 著者Salter, G.1, 著者Schmidt, T.1, 著者Sissa, E.1, 著者Zurlo, A.1, 著者Wildi, F.1, 著者Blanchard, P.1, 著者De Caprio, V.1, 著者Delboulbé, A.1, 著者Maurel, D.1, 著者Moulin, T.1, 著者Pavlov, A.1, 著者Rabou, P.1, 著者Ramos, J.1, 著者Roelfsema, R.1, 著者Rousset, G.1, 著者Stadler, E.1, 著者Rigal, F.1, 著者Weber, L.1, 著者 全て表示
所属:
1Max Planck Institute for Astronomy, Max Planck Society and Cooperation Partners, ou_2421692              

内容説明

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キーワード: techniques: high angular resolution stars: fundamental parameters techniques: radial velocities techniques: interferometric planets and satellites: atmospheres planets and satellites: formation Astrophysics - Earth and Planetary Astrophysics Astrophysics - Solar and Stellar Astrophysics
 要旨: Context. The G-type star GJ504A is known to host a 3-35 MJup companion whose temperature, mass, and projected separation all contribute to making it a test case for planet formation theories and atmospheric models of giant planets and light brown dwarfs.
Aims: We aim at revisiting the system age, architecture, and companion physical and chemical properties using new complementary interferometric, radial-velocity, and high-contrast imaging data.
Methods: We used the CHARA interferometer to measure GJ504A's angular diameter and obtained an estimation of its radius in combinationwith the HIPPARCOS parallax. The radius was compared to evolutionary tracks to infer a new independent age range for the system. We collected dual imaging data with IRDIS on VLT/SPHERE to sample the near-infrared (1.02-2.25 μm) spectral energy distribution (SED) of the companion. The SED was compared to five independent grids of atmospheric models (petitCODE,Exo-REM, BT-SETTL, Morley et al., and ATMO) to infer the atmospheric parameters of GJ 504b and evaluate model-to-model systematic errors. In addition, we used a specific model grid exploring the effect of different C/O ratios. Contrast limits from 2011 to 2017 were combined with radial velocity data of the host star through the MESS2 tool to define upper limits on the mass of additional companions in the system from 0.01 to 100 au. We used an MCMC fitting tool to constrain the companion'sorbital parameters based on the measured astrometry, and dedicated formation models to investigate its origin.
Results: We report a radius of 1.35 ± 0.04 R for GJ504A. The radius yields isochronal ages of 21 ± 2 Myr or 4.0 ± 1.8 Gyr for the system and line-of-sight stellar rotation axis inclination of 162.4-4.3+3.8 degrees or 186.6-3.8+4.3 degrees. We re-detect the companion in the Y2, Y3, J3, H2, and K1 dual-band images. The complete 1-4 μm SED shape of GJ504b is best reproduced by T8-T9.5 objects with intermediate ages (≤ 1.5Gyr), and/or unusual dusty atmospheres and/or super-solar metallicities. All atmospheric models yield Teff = 550 ± 50 K for GJ504b and point toward a low surface gravity (3.5-4.0 dex). The accuracy on the metallicity value is limited by model-to-model systematics; it is not degenerate with the C/O ratio. We derive log L/L = -6.15 ± 0.15 dex for the companion from the empirical analysis and spectral synthesis. The luminosity and Teff yield masses of M = 1.3-0.3+0.6 MJup and M = 23-9+10 MJup for the young and old age ranges, respectively. The semi-major axis (sma) is above 27.8 au and the eccentricity is lower than 0.55. The posterior on GJ 504b's orbital inclination suggests a misalignment with the rotation axis of GJ 504A. We exclude additional objects (90% prob.) more massive than 2.5 and 30 MJup with semi-major axes in the range 0.01-80 au for the young and old isochronal ages, respectively.
Conclusions: The mass and semi-major axis of GJ 504b are marginally compatible with a formation by disk-instability if the system is 4 Gyr old. The companion is in the envelope of the population of planets synthesized with our core-accretion model. Additional deep imaging and spectroscopic data with SPHERE and JWST should help to confirm the possible spin-orbit misalignment and refine the estimates on the companion temperature, luminosity, and atmospheric composition. Based on observations collected at the European Organisation for Astronomical Research in the Southern Hemisphere under ESO programs 093.C-0500, 095.C-0298, 096.C-0241, and 198.C-0209, and on interferometric observations obtained with the VEGA instrument on the CHARA Array.

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 日付: 2018
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出版物 1

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出版物名: Astronomy and Astrophysics
種別: 学術雑誌
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ページ: - 巻号: 618 通巻号: - 開始・終了ページ: - 識別子(ISBN, ISSN, DOIなど): -