SIMBAD references

2020ApJS..248...19T - Astrophys. J., Suppl. Ser., 248, 19-19 (2020/May-0)

Chemical composition of bright stars in the continuous viewing zone of the TESS space mission.

TAUTVAISIENE G., MIKOLAITIS S., DRAZDAUSKAS A., STONKUTE E., MINKEVICIUTE R., KJELDSEN H., BROGAARD K., VON ESSEN C., GRUNDAHL F., PAKSTIENE E., BAGDONAS V. and VISCASILLAS VAZQUEZ C.

Abstract (from CDS):

Accurate atmospheric parameters and chemical composition of stars play a vital role in characterizing physical parameters of exoplanetary systems and understanding of their formation. A full asteroseismic characterization of a star is also possible if its main atmospheric parameters are known. The NASA Transiting Exoplanet Survey Satellite (TESS) space telescope will play a very important role in searching of exoplanets around bright stars and stellar asteroseismic variability research. We have observed all 302 bright (V < 8 mag) and cooler than F5 spectral class stars in the northern TESS continuous viewing zone with a 1.65 m telescope at the Moletai Astronomical Observatory of Vilnius University and the high-resolution Vilnius University Echelle Spectrograph. We uniformly determined the main atmospheric parameters, ages, orbital parameters, velocity components, and precise abundances of 24 chemical species (C(C2), N(CN), [O I], Na I, Mg I, Al I, Si I, Si II, Ca I, Ca II, Sc I, Sc II, Ti I, Ti II, V I, Cr I, Cr II, Mn I, Fe I, Fe II, Co I, Ni I, Cu I, and Zn I) for 277 slowly rotating single stars in the field. About 83% of the sample stars exhibit the Mg/Si ratios greater than 1.0 and may potentially harbor rocky planets in their systems.

Abstract Copyright: © 2020. The American Astronomical Society. All rights reserved.

Journal keyword(s): High resolution spectroscopy - Catalogs - Chemical abundances

VizieR on-line data: <Available at CDS (J/ApJS/248/19): tablea1.dat>

Simbad objects: 303

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