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      Modeling He-rich subdwarfs through the hot-flasher scenario (brief version)

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          Abstract

          We present 1D numerical simulations aimed at studying the hot-flasher scenario for the formation of He-rich subdwarf stars. Sequences were calculated for a wide range of metallicities and with the He core flash at different points of the post-RGB evolution (i.e. different remnant masses). We followed the complete evolution from the ZAMS, through the hot-flasher event, and to the subdwarf stage for all kinds of hot-flashers. This allows us to present a homogeneous set of abundances for different metallicities and all flavors of hot-flashers. We extend the scope of our work by analyzing the effects in the predicted surface abundances of some standard assumptions in convective mixing and the effects of element diffusion. We find that the hot-flasher scenario is a viable explanation for the formation of He-sdO stars. Our results also show that element diffusion may produce the transformation of (post hot-flasher) He-rich atmospheres into He-deficient ones. If this is so, then the hot-flasher scenario is able to reproduce both the observed properties and distribution of He-sdO stars.

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          Author and article information

          Journal
          27 October 2008
          Article
          10.1088/1742-6596/172/1/012014
          0810.4828
          e0beefb1-d6ca-47d5-84d9-24876e3e40f1

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          J.Phys.Conf.Ser.172:012014,2009
          Submitted to the "Proceedings of the 16th European White Dwarf Workshop" (to be published JPCS). 4 pages including 1 table and 1 figure. Brief version of the work to be published by A&A (DOI: 10.1051/0004-6361:200810373), but including some complementary information to that work
          astro-ph

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