Investigating three Sirius-like systems with SPHERE
R. Gratton, V. D'Orazi, T. A. Pacheco, A. Zurlo, S. Desidera, J., Melendez, D. Mesa, R. Claudi, M. Janson, M. Langlois, E. Rickman, M. Samland,, T. Moulin, C. Soenke, E. Cascone, J. Ramos, F. Rigal, H. Avenhaus, J.L., Beuzit, B. Biller, A. Boccaletti, M. Bonavita, M. Bonnefoy

TL;DR
This study uses SPHERE imaging and spectral data to analyze Sirius-like systems, revealing new details about white dwarf properties, their progenitors, and pollution effects on companion stars, thus improving understanding of binary evolution.
Contribution
It provides new measurements of white dwarf parameters, refines orbital constraints, and links companion star pollution to AGB progenitor characteristics in Sirius-like systems.
Findings
HD114174B has higher temperature and shorter cooling age than previously thought.
The composition of MS stars aligns with pollution from AGB progenitors.
Identification of a new mild Ba-star among the companions.
Abstract
Sirius-like systems are wide binaries composed of a white dwarf (WD) and a companion of a spectral type earlier than M0. The WD progenitor evolves in isolation, but its wind during the AGB phase pollutes the companion surface and transfers some angular momentum. Within SHINE survey that uses SPHERE at the VLT, we acquired images of HD2133, HD114174, and CD-567708 and combined this data with high resolution spectra of the primaries, TESS, and literature data. We performed accurate abundance analyses for the MS. We found brighter J and K magnitudes for HD114174B than obtained previously and extended the photometry down to 0.95 micron. Our new data indicate a higher temperature and then shorter cooling age (5.57+/-0.02 Gyr) and larger mass (0.75+/-0.03 Mo) for this WD than previously assumed. This solved the discrepancy previously found with the age of the MS star. The two other WDs are…
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