A gap in the double white dwarf separation distribution caused by the common-envelope evolution: astrometric evidence from Gaia

Author:

Korol Valeriya1ORCID,Belokurov Vasily23ORCID,Toonen Silvia14

Affiliation:

1. Institute for Gravitational Wave Astronomy & School of Physics and Astronomy, University of Birmingham , Birmingham, B15 2TT, UK

2. Institute of Astronomy , Madingley Rd, Cambridge, CB3 0HA, UK

3. Center for Computational Astrophysics, Flatiron Institute , 162 5th Avenue, New York, NY 10010, USA

4. Anton Pannekoek Institute for Astronomy, University of Amsterdam , 1090 GE Amsterdam, The Netherlands

Abstract

ABSTRACT The trajectory of the center of light of an unresolved binary is different from that of its center of mass. Binary-induced stellar centroid wobbling can therefore be detected as an excess in the goodness-of-fit of the single-star astrometric model. We use reduced χ2 of the astrometric fit in the Gaia Early Data Release 3 to detect the likely unresolved double white dwarfs (DWDs). Using parallax-based distances we convert the excess of reduced χ2 into the amplitude of the centroid wobble δa, which is proportional to the binary separation a. The measured δa distribution drops towards larger wobble amplitudes and shows a break around log10δa ≈ −0.7 where it steepens. The integral of the distribution yields DWD fraction of 6.5 ± 3.7 per cent in the range $0.01 \lt a\, (\text{au}) \lt 2$. Using synthetic models of the Galactic DWDs we demonstrate that the break in the δa distribution corresponds to one side of a deep gap in the DWD separation distribution at around a ≈ 1 au. Model DWDs with separations less than several au shrink dramatically due to (at least one) common envelope phase, reshaping the original separation distribution, clearing a gap and creating a pile-up of systems with a ≈ 0.01 au and log10δa < −2. Our models reproduce the overall shape of the observed δa distribution and its normalization, however the predicted drop in the numbers of DWDs beyond the break is steeper than in the data.

Funder

NWO

European Space Agency

Science and Technology Facilities Council

European Research Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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