IRAS 18357-0604 - an analogue of the galactic yellow hypergiant IRC +10420?
arXiv:1311.3956 · doi:10.1051/0004-6361/201322772
Abstract
Yellow hypergiants represent a short-lived evolutionary episode experienced by massive stars as they transit to and from a red supergiant phase. As such, their properties provide a critical test of stellar evolutionary theory. The galactic yellow hypergiant IRC +10420 is a cornerstone system for understanding this phase, since it is the strongest post-RSG candidate known, has demonstrated real-time evolution across the Hertzsprung-Russell diagram and been subject to extensive mass loss. Here we report on the discovery of a twin of IRC +10420 - IRAS 18357-0604. Optical and near-IR spectroscopy are used to investigate the physical properties of IRAS 18357-0604, while IR photometry probes the nature of its circumstellar environment. Pronounced spectral similarities between IRAS 18357-0604 and IRC +10420 suggest comparable temperatures and wind geometries, while photometric data reveals a similarly dusty circumstellar environment, although historical mass loss appears to have been heavier in IRC +10420. The systemic velocity implies a distance compatible with the red supergiant dominated complex at the base of the Scutum Crux arm; the resultant luminosity determination is consistent with a physical association but suggests a lower initial mass than inferred for IRC +10420 (<20Msun versus ~40Msun). Evolutionary predictions for the physical properties of supernova progenitors derived from ~18-20Msun stars - or ~12-15Msun stars that have experienced enhanced mass loss as red supergiants - compare favourably with those of IRAS 18357-0604, which in turn appears to be similar to the the progenitor of SN2011dh; it may therefore provide an important insight into the nature of the apparently H-depleted yellow hypergiant progenitors of some type IIb SNe.
7 pages, 5 figures, accepted for publication in Astronomy and Astrophysics
References in corpus (11)
- A massive cluster of Red Supergiants at the base of the Scutum-Crux arm
- Discovery of an Extraordinarily Massive Cluster of Red Supergiants
- Fundamental properties of core-collapse Supernova and GRB progenitors: predicting the look of massive stars before death
- The cool supergiant population of the massive young star cluster RSGC1
- A third red supergiant rich cluster in the Scutum-Crux Arm
- The Progenitor of Supernova 2011dh Has Vanished
- Probing the ejecta of evolved massive stars in transition: A VLT/SINFONI K-band survey
- The supergiant B[e] star LHA 115-S 18 - binary and/or luminous blue variable?
- Red supergiants around the obscured open cluster Stephenson 2
- Integral-Field Spectroscopy of the Post Red Supergiant IRC +10420: evidence for an axi-symmetric wind
- Broad-band Spectroscopy of the Ongoing Large Eruption of the Luminous Blue Variable R71
Cited by in corpus (11)
- An updated stellar census of the Quintuplet cluster
- An ALMA 3mm continuum census of Westerlund 1
- A VLT/FLAMES survey for massive binaries in Westerlund 1: VII. Cluster census
- VdBH 222: a starburst cluster in the inner Milky Way
- On the evolutionary state of massive stars in transition phases in M33
- Revisiting the evolved hypergiants in the Magellanic Clouds
- Hypergiant V1302 Aql in 2001-2014
- Unity and Diversity of Yellow Hypergiants Family
- To the problem of spectral mimicry of supergiants
- Dense Molecular Environments of B[e] Supergiants and Yellow Hypergiants
- Painting a Family Portrait of the Yellow Super- and Hypergiants in the Milky Way I. Constraining the Distances and Luminosities