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Herschel-PACS observation of the 10 Myr old T Tauri disk TW Hya

2010/05/20 by W. F. Thi, W.‐F. Thi, G. Mathews +71 · 79 citations
Physics and Astronomy · #Accretion (finance) #Astrochemistry #Astronomy #Astrophysics #Astrophysics and Star Formation Studies #Atomic and Molecular Physics #Galaxy #Interstellar medium #Physics #Planet #Planetary mass #Planetary system #RADIUS #Stars #Stellar, planetary, and galactic studies #T Tauri star #astro-ph.SR

paper · pdf · doi:10.1051/0004-6361/201014578

published in Astronomy and Astrophysics 518, L125 (EDP Sciences) · 6 pages, 6 figures, accepted for publication in the A&A Herschel special issue

arxiv created 2010/05/20 · openalex publication_date 2010/07/01 · arxiv updated 2015/05/19 · openalex created_date 2021/02/01 · openalex updated_date 2026/07/31

Abstract

Planets are formed in disks around young stars. With an age of ~10 Myr, TW Hya is one of the nearest T Tauri stars that is still surrounded by a relatively massive disk. In addition a large number of molecules has been found in the TW Hya disk, making TW Hya the perfect test case in a large survey of disks with <i>Herschel<i/>–PACS to directly study their gaseous component. We aim to constrain the gas and dust mass of the circumstellar disk around TW Hya. We observed the fine-structure lines of [O i] and [C ii] as part of the open-time large program GASPS. We complement this with continuum data and ground-based <sup>12<sup/> CO 3–2 and <sup>13<sup/>CO 3–2 observations. We simultaneously model the continuum and the line fluxes with the 3D Monte-Carlo code <i>MCFOST<i/> and the thermo-chemical code <i>ProDiMo<i/> to derive the gas and dust masses. We detect the [O i] line at 63 <i>μ<i/>m. The other lines that were observed, [O i] at 145 <i>μ<i/>m and [C ii] at 157 <i>μ<i/>m, are not detected. No extended emission has been found. Preliminary modeling of the photometric and line data assuming [ <sup>12<sup/>CO] /[ <sup>13<sup/>CO] = 69 suggests a dust mass for grains with radius <1 mm of ~1.9 × 10<sup>-4<sup/> (total solid mass of 3 × 10<sup>-3<sup/> ) and a gas mass of (0.5–5) × 10<sup>-3<sup/> . The gas-to-dust mass may be lower than the standard interstellar value of 100.

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