First high-resolution optical spectra of the distant emission-line star VES 723 (IRAS 02110+6212)

Author:

Miroshnichenko A S123ORCID,Klochkova V G4,Chentsov E L4,Panchuk V E4,Yushkin M V4ORCID,Manset N5

Affiliation:

1. Department of Physics and Astronomy, University of North Carolina at Greensboro, PO Box 26170, Greensboro, NC 27402–6170, USA

2. Main Astronomical Observatory of the Russian Academy of Sciences, Saint-Petersburg, Russia

3. Fesenkov Astrophysical Institute, Observatory 23, 050023, Almaty, Kazakhstan

4. Special Astrophysical Observatory of the Russian Academy of Sciences, Nizhnyj Arkhyz, Russia

5. CFHT Corporation, 65–1238 Mamalahoa Hwy, Kamuela, HI 96743, USA

Abstract

ABSTRACT The first high-resolution spectra (resolving powers of R ≥ 60 000) of the emission-line star VES 723, which has an unknown evolutionary status, were taken at the 6-m Big Telescope Alt-Azimuthal and the 3.6-m Canada–France–Hawaii Telescope. The spectrum is dominated with powerful emission lines of neutral hydrogen and helium, and forbidden singly ionized nitrogen. The Hα and He i lines were found to exhibit broad foundations of the emission profiles at least 250 km s−1 wide. The strongest emission lines exhibit no noticeable variations during the observing period (2011–2017) except for the He i lines. The spectra contain multicomponent interstellar absorptions of Na i and K i (mult. 1) and several strongest diffuse interstellar bands, while photospheric absorptions have not been detected. The average radial velocity of the forbidden [N ii] emission line centres was adopted as the systemic velocity (Vsys ≈ −52 km s−1), which indicates a large distance of ≈6 kpc. Our luminosity estimates of log  L/L⊙ = 3.7−4.0 for two different Gaia distance measurements, along with an effective temperature of Teff = 25 000 ± 2000 K and a fast decrease of the infrared flux longward of $\lambda \sim 10\, \mu{\rm m}$, allow us to suggest that VES 723 is neither a pre-main-sequence Herbig B[e] star nor a B[e] supergiant but rather a member of the FS CMa group of objects with the B[e] phenomenon.

Funder

University of California

Jet Propulsion Laboratory

California Institute of Technology

National Aeronautics and Space Administration

University of Massachusetts

National Science Foundation

Institut National des Sciences de l'Univers, Centre National de la Recherche Scientifique

University of Hawaii

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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