SIMBAD references

2021ApJ...911L..20R - Astrophys. J., 911, L20-L20 (2021/April-3)

Gaia EDR3 parallax zero-point offset based on W Ursae Majoris-type eclipsing binaries.

REN F., CHEN X., ZHANG H., DE GRIJS R., DENG L. and HUANG Y.

Abstract (from CDS):

We independently determine the zero-point offset of the Gaia early Data Release-3 (EDR3) parallaxes based on ∼110,000 W Ursae Majoris (EW)-type eclipsing binary systems. EWs cover almost the entire sky and are characterized by a relatively complete coverage in magnitude and color. They are an excellent proxy for Galactic main-sequence stars. We derive a W1-band period-luminosity relation with a distance accuracy of 7.4%, which we use to anchor the Gaia parallax zero-point. The final, global parallax offsets are -28.6 ± 0.6 µas and -25.4 ± 4.0 µas (before correction) and 4.2 ± 0.5 µas and 4.6 ± 3.7 µas (after correction) for the five- and six-parameter solutions, respectively. The total systematic uncertainty is 1.8 µas. The spatial distribution of the parallax offsets shows that the bias in the corrected Gaia EDR3 parallaxes is less than 10 µas across 40% of the sky. Only 15% of the sky is characterized by a parallax offset greater than 30 µas. Thus, we have provided independent evidence that the parallax zero-point correction provided by the Gaia team significantly reduces the prevailing bias. Combined with literature data, we find that the overall Gaia EDR3 parallax offsets for Galactic stars are [-20, -30] µas and 4-10 µas, respectively, before and after correction. For specific regions, an additional deviation of about 10 µas is found.

Abstract Copyright: © 2021. The American Astronomical Society. All rights reserved.

Journal keyword(s): Parallax - Eclipsing binary stars - W Ursae Majoris variable stars - Catalogs - the Milky Way - Close binary stars

Simbad objects: 3

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