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Reconstruction and Analysis of Component Spectra of Binary and Multiple Stars
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In the last two decades about a dozen methods were invented which derive, from a series of composite spectra over the orbit, the spectra of individual components in binary and multiple systems. Reconstructed spectra can then be analyzed with the tools developed for single stars. Eventually this has created the opportunity for chemical composition studies in previously inaccessible components of binary stars, and to follow their chemical evolution, an important aspect in understanding evolution of stellar systems. First, we review new developments in techniques to separate and reconstruct individual spectra, and thereafter concentrate on some applications. In particular, we emphasize the elemental abundance studies for high-mass stars, and present our recent results in probing theoretical evolution models which include effects of rotationally induced mixing.
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Cited by 3 Pith papers
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Unravelling Mass Transfer in Algols from Surface Abundances. I. Z Vulpeculae
Z Vul's donor star shows a C/N ratio of 2.14, lacking the deep carbon depletion expected after mass stripping, and the fitted models favor nearly conservative Case A mass transfer.
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Pulsating and Non-pulsating Components of Detached Eclipsing Binaries in the $\delta$ Scuti instability strip
Across four detached eclipsing binaries inside the delta Scuti instability strip, the component that does not pulsate is systematically the one with the higher measured metallicity.
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Looking for Signs of Unresolved Binarity in the Continuum of LAMOST Stellar Spectra
Continuum comparison with synthetic spectra does not distinguish single from unresolved binary stars in LAMOST low-resolution spectra.
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