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Barium (Ba) dwarfs and CH subgiants are the less-evolved analogues of Ba and CH giants. They are F- to G-type main-sequence stars polluted with heavy elements by a binary companion when the latter was on the Asymptotic Giant Branch (AGB).…

Barium (Ba) stars form via mass-transfer in binary systems, and can subsequently interact with their white dwarf companion in a second stage of binary interaction. We used observations of main-sequence Ba systems as input for our…

Solar and Stellar Astrophysics · Physics 2018-09-17 Ana Escorza , Lionel Siess , Drisya Karinkuzhi , Henri M. J. Boffin , Alain Jorissen , Hans Van Winckel

A rich zoo of peculiar objects forms when Asymptotic Giant Branch (AGB) stars, undergo interactions in a binary system. For example, Barium (Ba) stars are main-sequence and red-giant stars that accreted mass from the outflows of a former…

Solar and Stellar Astrophysics · Physics 2022-12-07 Ana Escorza , Robert J. De Rosa

Barium (Ba) stars are chemically peculiar stars that show enhanced surface abundances of heavy elements produced by the slow-neutron-capture process, the so-called s-process. These stars are not sufficiently evolved to undergo the s-process…

Solar and Stellar Astrophysics · Physics 2024-10-29 Sara Vitali , Ana Escorza , Ditte Slumstrup , Paula Jofré

The enrichment in s-process elements of barium stars is known to be due to pollution by mass transfer from a companion formerly on the thermally-pulsing asymptotic giant branch (AGB), now a carbon-oxygen white-dwarf (WD). This paper…

Solar and Stellar Astrophysics · Physics 2016-02-10 T. Merle , A. Jorissen , S. Van Eck , T. Masseron , H. Van Winckel

Understanding interactions of binary systems on the red giant branch is crucial to understanding the formation of compact stellar remnants such as helium-core white dwarfs (He-WDs) and hot subdwarfs. However, the detailed evolution of such…

Barium stars are extrinsic Asymptotic Giant Branch (AGB) stars. They present the s-enhancement characteristic for AGB and post-AGB stars, but are in an earlier evolutionary stage (main sequence dwarfs, subgiants, red giants). They are…

Solar and Stellar Astrophysics · Physics 2014-11-20 L. Husti , R. Gallino , S. Bisterzo , O. Straniero , S. Cristallo

Masses are one of the most difficult stellar properties to measure. In the case of the white-dwarf companions of Barium stars, the situation is worse. These stars are dim, cool, and difficult to observe via direct methods. However, Ba stars…

Solar and Stellar Astrophysics · Physics 2023-03-15 A. Escorza , R. J. De Rosa

Barium stars are thought to result from binary evolution in systems wide enough to allow the more massive component to reach the asymptotic giant branch and eventually become a CO white dwarf. While Ba stars were initially known only among…

Solar and Stellar Astrophysics · Physics 2020-01-31 P. L. North , A. Jorissen , A. Escorza , B. Miszalski , J. Mikolajewska

We report three new barium (Ba) dwarfs lying in Sirius-like systems, which provides direct evidence that Ba dwarfs are companions to white dwarfs (WDs). Atmospheric parameters, stellar masses, and chemical abundances of 25 elements,…

Solar and Stellar Astrophysics · Physics 2017-10-31 X. M. Kong , Y. Bharat Kumar , G. Zhao , J. K. Zhao , X. S. Fang , J. R. Shi , L. Wang , J. B. Zhang , H. L. Yan

Barium stars and technetium-poor, extrinsic S stars are binary systems with a white dwarf companion, and with orbital elements similar to those of symbiotic systems. One may thus wonder whether these various families of binary systems…

Astrophysics · Physics 2007-05-23 A. Jorissen

Wide hot subdwarf B (sdB) binaries with main-sequence companions are outcomes of stable mass transfer from evolved red giants. The orbits of these binaries show a strong correlation between their orbital periods and mass ratios. The origins…

Solar and Stellar Astrophysics · Physics 2020-09-30 Joris Vos , Alexey Bobrick , Maja Vuckovic

Red giants are increasingly used as stellar population tracers due to their well-understood evolution and the availability of asteroseismic observables. However, stellar binarity can alter observable properties and introduce strong biases.…

Solar and Stellar Astrophysics · Physics 2026-02-02 Paul G. Beck

The recent discovery of long-period eccentric binaries hosting a He-WD or a sdB star has been challenging binary-star modelling. Based on accurate determinations of the stellar and orbital parameters for IP Eri, a K0 + He-WD system, we…

Solar and Stellar Astrophysics · Physics 2014-05-06 L. Siess , P. J. Davis , A. Jorissen

The evolution of low mass (M < 2.5 Msun) binaries through the common envelope phase has been studied for systems in which one member is on its first ascent of the red giant branch. Three-dimensional hydrodynamical simulations have been…

Astrophysics · Physics 2009-10-31 Eric L. Sandquist , Ronald E. Taam , Andreas Burkert

The binary systems consisting of a Be star and a white dwarf (BeWDs) are very interesting.They can originate from the binaries composed of a Be star and a subdwarf O or B star (BesdOBs), and they can merge into red giants via luminous red…

Solar and Stellar Astrophysics · Physics 2023-04-06 ChunHua Zhu , GuoLiang Lü , Xizhen Lu , Jie He

The recently identified Gaia population of main-sequence--white dwarf (MS+WD) binaries at separations of ${\sim}\,1~{\rm AU}$, often with moderate eccentricities, is not readily reproduced by binary population synthesis models. Barium stars…

Solar and Stellar Astrophysics · Physics 2026-01-13 Param Rekhi , Sahar Shahaf , Sagi Ben-Ami , Na'ama Hallakoun , Johanna Müller-Horn , Silvia Toonen , Hans-Walter Rix

This paper provides long-period and revised orbits for barium and S stars adding to previously published ones. The sample of barium stars with strong anomalies comprise all such stars present in the Lu et al. catalogue. We find orbital…

Solar and Stellar Astrophysics · Physics 2019-06-26 A. Jorissen , H. M. J. Boffin , D. Karinkuzhi , S. Van Eck , A. Escorza , S. Shetye , H. Van Winckel

We calculate the orbital evolution of binary systems where the primary star is an evolved red giant branch (RGB) star, while the secondary star is a low-mass main sequence (MS) star or a brown dwarf. The evolution starts with a tidal…

Solar and Stellar Astrophysics · Physics 2014-11-20 Ealeal Bear , Noam Soker

We report the discovery of 24 spectroscopic binary companions to giant stars. We fully constrain the orbital solution for 6 of these systems. We cannot unambiguously derive the orbital elements for the remaining stars because the phase…

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