Testing the accretion scenario of lambda Boo stars
J. Alacoria, C. Saffe, M. Jaque Arancibia, R. Angeloni, P., Miquelarena, M. Flores, M. E. Veramendi, A. Collado

TL;DR
This study tests the accretion model for lambda Boo stars by analyzing multiple star systems and finds little support for the scenario, as the expected binary configurations are not observed.
Contribution
The paper provides detailed abundance analyses of multiple systems hosting lambda Boo candidates, challenging the accretion scenario's predictions.
Findings
No binary system has two confirmed lambda Boo stars.
HD 15165 is a lambda Boo star with a near solar companion, challenging the accretion model.
Few systems show mild lambda Boo patterns, not clear cases.
Abstract
Our aim is to test the accretion scenario of lambda Boo stars. This model predicts that a binary system with two early-type stars passing through a diffuse cloud should both display the same superficial peculiarity. We carried out a detailed abundance determination of three multiple systems hosting a candidate lambda Boo star: the remarkable triple system HD 15164/65/65C and the binary systems HD 193256/281 and HD 198160/161. The abundance analysis of HD 15164/65/65C shows a clear lambda Boo object (HD 15165) and two objects with near solar composition (HD 15164 and 15165C). Notably, the presence of a lambda Boo star (HD 15165) together with a near solar early-type object (HD 15164) is difficult to explain under the accretion scenario. Also, the solar-like composition derived for the late-type star of the system (HD 15165C) could be used, for the first time, as a proxy for the initial…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Educational Leadership and Practices · Astronomy and Astrophysical Research
