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Classical T Tauri stars as sources of parsec-scale optical outflows

2004/04/01 by F. McGroarty, T. P. Ray · 1 citation
Chemistry · Physics and Astronomy · #Astro and Planetary Science #Astronomy #Astrophysics #Astrophysics and Star Formation Studies #Meteorology #Molecular Spectroscopy and Structure #Outflow #Parsec #Physics #Scale (ratio) #Star formation #Stars #T Tauri star #Young stellar object #astro-ph

paper · pdf · doi:10.1051/0004-6361:20041124

published as Astron.Astrophys. 420 (2004) 975-986 · 13 pages, 11 figures; accepted for publication in A&A. The resolution in the figures is very low, a high resolution version of this paper is available at www.dias.ie/dias/cosmic/astrophysics/general/Staff/homepages/fmcg/publication s.html

arxiv created 2004/04/01 · openalex publication_date 2004/06/01 · arxiv updated 2009/12/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

Previous studies of young stellar objects (YSOs) have uncovered a number of associated parsec-scale optical outflows, the majority of which are driven by low-mass, embedded Class I sources. Here we examine more evolved Classical T Tauri stars (CTTSs), i.e. Class II sources, to determine whether these are also capable of driving parsec-scale outflows. Five such sources are presented here – CW Tau, DG Tau, DO Tau, HV Tau C and RW Aur, all of which show optical evidence for outflows of the order of 1 pc (24' at the distance of Taurus-Auriga). These sources were previously known only to drive “micro-jets” or small-scale outflows 1´ in length. A parsec-scale outflow from a less evolved source (DG Tau B) which was noted in the course of this work is also included here. Examination of the five newly discovered large-scale outflows from CTTSs shows that they have comparable morphologies, apparent dynamical timescales and degrees of collimation to those from less evolved sources. There is also strong evidence that these outflows have blown out of their parent molecular clouds. Finally we note that the “fossil record” provided by these outflows suggests their sources could have undergone FU Orionis-type outbursts in the past.

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