English

Gas and Dust Associated with the Strange, Isolated, Star BP Piscium

Astrophysics 2009-11-13 v2

Abstract

We have carried out a multiwavelength observational campaign demonstrating some of the remarkable properties of the infrared-bright variable star BP Psc. Surrounded by a compact dusty, gaseous disk, this little-studied late-G (or early-K) type star emits about 75% of its detected energy flux at infrared wavelengths. Evidence for accretion of gas in conjunction with narrow bi-polar jets and Herbig-Haro objects is apparently consistent with classification of BP Psc as a pre-main sequence star, as postulated in most previous studies. If young, then BP Psc would be one of the nearest and oldest known classical T Tauri stars. However, such an evolutionary classification encounters various problems that are absent or much less severe if BP Psc is instead a luminosity class III post-main sequence star. In this case, it would be the first known example of a first ascent giant surrounded by a massive molecular disk with accompanying rapid gas accretion and prominent jets and HH objects. In this model, the genesis of the massive dusty gaseous disk could be a consequence of the envelopment of a low mass companion star. Properties in the disk may be conducive to the current formation of planets, a gigayear or more after the formation of BP Psc itself.

Keywords

Cite

@article{arxiv.0802.0226,
  title  = {Gas and Dust Associated with the Strange, Isolated, Star BP Piscium},
  author = {B. Zuckerman and C. Melis and Inseok Song and David S. Meier and Marshall D. Perrin and Bruce Macintosh and Christian Marois and Alycia J. Weinberger and Joseph H. Rhee and James R. Graham and Joel H. Kastner and Patrick Palmer and T. Forveille and E. E. Becklin and D. J. Wilner and T. S. Barman and G. W. Marcy and M. S. Bessell},
  journal= {arXiv preprint arXiv:0802.0226},
  year   = {2009}
}

Comments

Accepted for Astrophysical Journal New version with minor changes: includes fixing a typo on the 3rd line of the paragraph that follows Equa 4 and adding a new reference (Nordhaus and Blackman 2006)