Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes

Symbiotic stars are long-period interacting binaries consisting of a cool giant as the donor star and a white dwarf as the acretor. Due to acretion of the material from the giant’s stellar wind, the white dwarf becomes very hot and luminous. The circumstellar material partially ionized by the hot st...

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Main Authors: M. Sekeráš, A. Skopal
Format: Article
Language:English
Published: CTU Central Library 2015-02-01
Series:Acta Polytechnica CTU Proceedings
Online Access:https://ojs.cvut.cz/ojs/index.php/APP/article/view/2927
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spelling doaj-8df0e592fc4f470c8b824b2ed5f27cf22020-11-24T22:08:57ZengCTU Central LibraryActa Polytechnica CTU Proceedings2336-53822015-02-012128228510.14311/APP.2015.02.02822685Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering ProcessesM. Sekeráš0A. Skopal1Astronomical Institute of the Slovak Academy of Sciences, 059 60 Tatransk´a Lomnica, SlovakiaAstronomical Institute of the Slovak Academy of Sciences, 059 60 Tatransk´a Lomnica, SlovakiaSymbiotic stars are long-period interacting binaries consisting of a cool giant as the donor star and a white dwarf as the acretor. Due to acretion of the material from the giant’s stellar wind, the white dwarf becomes very hot and luminous. The circumstellar material partially ionized by the hot star, represents an ideal medium for processes of scattering. To investigate the symbiotic nebula we modeled the wide wings of the resonance lines OVI λ1032 Å, λ1038 Å and HeII λ1640 Å emission line in the spectrum of AG Dra, broadened by Thomson scattering. On the other hand, Raman and Rayleigh scattering arise in the neutral part of the circumstellar matter around the giant and provide a powerful tool to probe e.g. the ionization structure of the symbiotic systems and distribution of the neutral hydrogen atoms in the giant’s wind.https://ojs.cvut.cz/ojs/index.php/APP/article/view/2927
collection DOAJ
language English
format Article
sources DOAJ
author M. Sekeráš
A. Skopal
spellingShingle M. Sekeráš
A. Skopal
Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes
Acta Polytechnica CTU Proceedings
author_facet M. Sekeráš
A. Skopal
author_sort M. Sekeráš
title Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes
title_short Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes
title_full Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes
title_fullStr Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes
title_full_unstemmed Diagnostic of the Symbiotic Stars Environment by Thomson, Raman and Rayleigh Scattering Processes
title_sort diagnostic of the symbiotic stars environment by thomson, raman and rayleigh scattering processes
publisher CTU Central Library
series Acta Polytechnica CTU Proceedings
issn 2336-5382
publishDate 2015-02-01
description Symbiotic stars are long-period interacting binaries consisting of a cool giant as the donor star and a white dwarf as the acretor. Due to acretion of the material from the giant’s stellar wind, the white dwarf becomes very hot and luminous. The circumstellar material partially ionized by the hot star, represents an ideal medium for processes of scattering. To investigate the symbiotic nebula we modeled the wide wings of the resonance lines OVI λ1032 Å, λ1038 Å and HeII λ1640 Å emission line in the spectrum of AG Dra, broadened by Thomson scattering. On the other hand, Raman and Rayleigh scattering arise in the neutral part of the circumstellar matter around the giant and provide a powerful tool to probe e.g. the ionization structure of the symbiotic systems and distribution of the neutral hydrogen atoms in the giant’s wind.
url https://ojs.cvut.cz/ojs/index.php/APP/article/view/2927
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AT askopal diagnosticofthesymbioticstarsenvironmentbythomsonramanandrayleighscatteringprocesses
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