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Eclipses by circumstellar material in the T Tauri star AA Tau. II. Evidence for non-stationary magnetospheric accretion

J. BouvierLaboratoire d'Astrophysique, Observatoire de Grenoble, Université Joseph Fourier, BP. 53, 38041 Grenoble Cedex 9, FranceK. N. GrankinAstronomical Institute of the Academy of Sciences of Uzbekistan, Astronomicheskaya 33, Tashkent 700052, UzbekistanS. H. P. AlencarDepartamento de Física – ICEx – UFMG, Caixa Postal 702, 30161-970, Belo Horizonte, BrasilC. DougadosLaboratoire d'Astrophysique, Observatoire de Grenoble, Université Joseph Fourier, BP. 53, 38041 Grenoble Cedex 9, FranceM. FernándezInstituto de Astrofisica de Andalucía (CSIC), Apdo 3004, 18080 Granada, SpainGibor BasriDepartment of Astronomy, University of California at Berkeley, 601 Campbell Hall 3411, Berkeley, CA 94720, USANatalie M. BatalhaObservatório Nacional/CNPq, Rua General José Cristino 77, Rio de Janeiro, RJ 20920-400, BrazilE. W. GuentherThüringer Landessternwarte Tautenburg, Karl-Schwarzschild-Observatorium, Sternwarte 5, 07778 Tautenburg, GermanyM. IbrahimovAstronomical Institute of the Academy of Sciences of Uzbekistan, Astronomicheskaya 33, Tashkent 700052, UzbekistanKardopolov, V. I.Byurakan Astrophysical Observatory, Aragatsotn prov., 378433 ArmeniaT. Yu. MagakianAstronomical Institute of the Academy of Sciences of Uzbekistan, Astronomicheskaya 33, Tashkent 700052, UzbekistanS. MelnikovCrimean Astrophysical Observatory and Isaac Newton Institute of Chile , Crimean Branch, p/o Nauchny, Crimea, 98409, UkraineП. П. ПетровFessenkov Astrophysical Institute, 480068 Almaty, KazakstanMayer RudLAEFF - INTA, PO Box 50727, 28080 Madrid, SpainM. R. Zapatero Osorio
ArXiv.orgrepository2003en
ABI

Аннотация

We report the results of a synoptic study of the photometric and spectroscopic variability of the classical T Tauri star AA Tau on timescales ranging from a few hours to several weeks. Emission lines show both infall and outflow signatures and are well reproduced by magnetospheric accretion models with moderate mass accretion rates and high inclinations. The veiling shows variations that indicate the presence of 2 rotationally modulated hot spots corresponding to the two magnetosphere poles. It correlates well with the HeI line flux, with B-V and the V excess flux. We have indications of a time delay between the main emission lines and veiling, the lines formed farther away preceding the veiling changes. The time delay we measure is consistent with accreted material propagating downwards the accretion columns at free fall velocity from a distance of about 8 Rstar. We also report periodic radial velocity variations of the photospheric spectrum which might point to the existence of a 0.02 Msun object orbiting the star at a distance of 0.08 AU. During a few days, the variability of the system was strongly reduced and the line fluxes and veiling severely depressed. We argue that this episode of quiescence corresponds to the temporary disruption of the magnetic configuration at the disk inner edge. The radial velocity variations of inflow and outflow diagnostics in the Halpha profile yield further evidence for large scale variations of the magnetic configuration on a timescale of a month. These results may provide the first clear evidence for large scale instabilities developping in T Tauri magnetospheres as the magnetic field lines are twisted by differential rotation between the star and the inner disk.

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