English

Disk-mediated accretion burst in a high-mass young stellar object

Solar and Stellar Astrophysics 2017-04-11 v1 Astrophysics of Galaxies

Abstract

Solar-mass stars form via circumstellar disk accretion (disk-mediated accretion). Recent findings indicate that this process is likely episodic in the form of accretion bursts, possibly caused by disk fragmentation. Although it cannot be ruled out that high-mass young stellar objects (HMYSOs; M>M>8 M_\odot, Lbol>L_{bol}>5×\times103^3 L_\odot) arise from the coalescence of their low-mass brethren, latest results suggest that they more likely form via disks. Accordingly, disk-mediated accretion bursts should occur. Here we report on the discovery of the first disk-mediated accretion burst from a \sim20 M_\odot HMYSO. Our near-infrared images show the brightening of the central source and its outflow cavities. Near-infrared spectroscopy reveals emission lines typical of accretion bursts in low-mass protostars, but orders of magnitude more luminous. Moreover, the energy released and the inferred mass-accretion rate are also orders of magnitude larger. Our results identify disk accretion as the common mechanism of star formation across the entire stellar mass spectrum.

Keywords

Cite

@article{arxiv.1704.02628,
  title  = {Disk-mediated accretion burst in a high-mass young stellar object},
  author = {A. Caratti o Garatti and B. Stecklum and R. Garcia Lopez and J. Eislöffel and T. P. Ray and A. Sanna and R. Cesaroni and C. M. Walmsley and R. D. Oudmaijer and W. J. de Wit and L. Moscadelli and J. Greiner and A. Krabbe and C. Fischer and R. Klein and J. M. Ibañez},
  journal= {arXiv preprint arXiv:1704.02628},
  year   = {2017}
}

Comments

27 pages, 3 figures. Published in Nature Physics, 2016, Vol. 13, pag. 276

R2 v1 2026-06-22T19:12:12.658Z