Pulsational instabilities in hot pre-horizontal branch stars

The ϵ mechanism is a self-excitation mechanism of pulsations which acts on the regions where nuclear burning takes place. It has been shown that the ϵ mechanism can excite pulsations in models of hot helium-core flash, and that the pulsations of LS IV-14· 116, a He-enriched hot subdwarf star, could...

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Main Authors: Battich Tiara, Miller Bertolami Marcelo M., Córsico Alejandro H., Althaus Leandro G.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Online Access:https://doi.org/10.1051/epjconf/201715206010
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spelling doaj-509ca8588415436685c144a457df7c7f2021-08-02T08:40:47ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011520601010.1051/epjconf/201715206010epjconf_puls2017_06010Pulsational instabilities in hot pre-horizontal branch starsBattich TiaraMiller Bertolami Marcelo M.0Córsico Alejandro H.Althaus Leandro G.Instituto de Astrofísica de La Plata, CONICET-UNLPThe ϵ mechanism is a self-excitation mechanism of pulsations which acts on the regions where nuclear burning takes place. It has been shown that the ϵ mechanism can excite pulsations in models of hot helium-core flash, and that the pulsations of LS IV-14· 116, a He-enriched hot subdwarf star, could be explained that way. We aim to study the ϵmechanism effects on models of hot pre-horizontal branch stars and determine, if possible, a domain of instability in the log g — log Teff plane. We compute non-adiabatic non-radial pulsations on such stellar models, adopting different values of initial chemical abundances and mass of the hydrogen envelope at the time of the main helium flash. We find an instability domain of long-period (400 s ≲ P ≲ 2500 s) g-modes for models with 22000K ≲ Teff ≲ 50000K and 4.67 ≲ log g ≲ 6.15.https://doi.org/10.1051/epjconf/201715206010
collection DOAJ
language English
format Article
sources DOAJ
author Battich Tiara
Miller Bertolami Marcelo M.
Córsico Alejandro H.
Althaus Leandro G.
spellingShingle Battich Tiara
Miller Bertolami Marcelo M.
Córsico Alejandro H.
Althaus Leandro G.
Pulsational instabilities in hot pre-horizontal branch stars
EPJ Web of Conferences
author_facet Battich Tiara
Miller Bertolami Marcelo M.
Córsico Alejandro H.
Althaus Leandro G.
author_sort Battich Tiara
title Pulsational instabilities in hot pre-horizontal branch stars
title_short Pulsational instabilities in hot pre-horizontal branch stars
title_full Pulsational instabilities in hot pre-horizontal branch stars
title_fullStr Pulsational instabilities in hot pre-horizontal branch stars
title_full_unstemmed Pulsational instabilities in hot pre-horizontal branch stars
title_sort pulsational instabilities in hot pre-horizontal branch stars
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2017-01-01
description The ϵ mechanism is a self-excitation mechanism of pulsations which acts on the regions where nuclear burning takes place. It has been shown that the ϵ mechanism can excite pulsations in models of hot helium-core flash, and that the pulsations of LS IV-14· 116, a He-enriched hot subdwarf star, could be explained that way. We aim to study the ϵmechanism effects on models of hot pre-horizontal branch stars and determine, if possible, a domain of instability in the log g — log Teff plane. We compute non-adiabatic non-radial pulsations on such stellar models, adopting different values of initial chemical abundances and mass of the hydrogen envelope at the time of the main helium flash. We find an instability domain of long-period (400 s ≲ P ≲ 2500 s) g-modes for models with 22000K ≲ Teff ≲ 50000K and 4.67 ≲ log g ≲ 6.15.
url https://doi.org/10.1051/epjconf/201715206010
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AT millerbertolamimarcelom pulsationalinstabilitiesinhotprehorizontalbranchstars
AT corsicoalejandroh pulsationalinstabilitiesinhotprehorizontalbranchstars
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