V838 Monocerotis as seen by ALMA: a remnant of a binary merger in a triple system
arXiv:2106.07427 · doi:10.1051/0004-6361/202141526
Abstract
V838 Mon erupted in 2002 quickly becoming the prototype of a new type of stellar eruptions known today as (luminous) red novae. The red nova outbursts are thought to be caused by stellar mergers. The merger in V838 Mon took place in a triple or higher system involving two B-type stars. We mapped the merger site with ALMA at a resolution of 25 mas in continuum dust emission and in rotational lines of simple molecules, including CO, SiO, SO, SO, AlOH, and HS. We use radiative transfer calculations to reproduce the remnant's architecture at the epoch of the ALMA observations. For the first time, we identify the position of the B-type companion relative to the outbursting component of V838 Mon. The stellar remnant is surrounded by a clumpy wind with characteristics similar to winds of red supergiants. The merger product is also associated with an elongated structure, mas, seen in continuum emission, and which we interpret as a disk seen at a moderate inclination. Maps of continuum and molecular emission show also a complex region of interaction between the B-type star (its gravity, radiation, and wind) and the flow of matter ejected in 2002. The remnant's molecular mass is about 0.1 M and the dust mass is 8.310 M. The mass of the atomic component remains unconstrained. The most interesting region for understanding the merger of V838 Mon remains unresolved but appears elongated. To study it further in more detail will require even higher angular resolutions. ALMA maps show us an extreme form of interaction between the merger ejecta with a distant (250 au) companion. This interaction is similar to that known from the Antares AB system but at a much higher mass loss rate. The B-type star not only deflects the merger ejecta but also changes its chemical composition with an involvement of circumstellar shocks.
A&A submitted. Comments welcome
References in corpus (22)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- Molecfit: A general tool for telluric absorption correction II. Quantitative evaluation on ESO-VLT X-Shooter spectra
- Mergers and Obliquities in Stellar Triples
- V838 Monocerotis: A Geometric Distance from Hubble Space Telescope Polarimetric Imaging of its Light Echo
- The X-Shooter Spectral Library (XSL): Data Release 2
- Long-term evolution of a magnetic massive merger product
- A new survey of cool supergiants in the Magellanic Clouds
- Keck/HIRES spectroscopy of V838 Monocerotis in October 2005
- A Young Stellar Cluster Surrounding the Peculiar Eruptive Variable V838 Monocerotis
- Eccentricity distribution of wide low-mass binaries
- V838 Monocerotis: the central star and its environment a decade after outburst
- Binary Red Supergiants II: Discovering and Characterizing B-type Companions
- NOEMA maps the CO environment of the red supergiant Cep
- Magnetic Activity in Stellar Merger Products
- High Spatial Resolution Mid-IR Imaging of V838 Monocerotis: Evidence of New Circumstellar Dust Creation
- The continued optical to mid-IR evolution of V838 Monocerotis
- Seeds of Life in Space SOLIS. IX. Chemical segregation of and SO toward the low-mass protostellar shocked region of L1157
- Infrared spectroscopy of carbon monoxide in V838 Mon during 2002--2006
- SiO maser astrometry of the red transient V838 Monocerotis
- Extended CO emission in the field of the light echo of V838 Mon
- The properties of V838 Mon in 2002 November