Atomic data and collisional-radiative model for beryllium and its ions

In this work we present a collisional–radiative model constructed for all ionization stages of beryllium. Convergent close-coupling, K-matrix and Coulomb–Born-exchange methods were applied to calculate the necessary atomic data. For the neutral beryllium atom a comparison of all methods is given. Fr...

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Main Authors: Kondratyev, D., Vainshtein, L., Bray, Igor, Fursa, Dmitry, Ralchenko, Y.
Other Authors: -
Format: Conference Paper
Published: Institute of Physics Publishing Ltd. 2014
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/7827
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author Kondratyev, D.
Vainshtein, L.
Bray, Igor
Fursa, Dmitry
Ralchenko, Y.
author2 -
author_facet -
Kondratyev, D.
Vainshtein, L.
Bray, Igor
Fursa, Dmitry
Ralchenko, Y.
author_sort Kondratyev, D.
building Curtin Institutional Repository
collection Online Access
description In this work we present a collisional–radiative model constructed for all ionization stages of beryllium. Convergent close-coupling, K-matrix and Coulomb–Born-exchange methods were applied to calculate the necessary atomic data. For the neutral beryllium atom a comparison of all methods is given. Fractional ion abundances, radiative power losses and electron cooling rates were calculated as functions of electron temperature. The comparison with other available data shows a rather good agreement.
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format Conference Paper
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institution Curtin University Malaysia
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last_indexed 2025-11-14T06:18:03Z
publishDate 2014
publisher Institute of Physics Publishing Ltd.
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spelling curtin-20.500.11937-78272017-09-13T14:33:46Z Atomic data and collisional-radiative model for beryllium and its ions Kondratyev, D. Vainshtein, L. Bray, Igor Fursa, Dmitry Ralchenko, Y. - collisional–radiative model elementary processes beryllium In this work we present a collisional–radiative model constructed for all ionization stages of beryllium. Convergent close-coupling, K-matrix and Coulomb–Born-exchange methods were applied to calculate the necessary atomic data. For the neutral beryllium atom a comparison of all methods is given. Fractional ion abundances, radiative power losses and electron cooling rates were calculated as functions of electron temperature. The comparison with other available data shows a rather good agreement. 2014 Conference Paper http://hdl.handle.net/20.500.11937/7827 10.1088/0031-8949/2014/T161/014007 Institute of Physics Publishing Ltd. restricted
spellingShingle collisional–radiative model
elementary processes
beryllium
Kondratyev, D.
Vainshtein, L.
Bray, Igor
Fursa, Dmitry
Ralchenko, Y.
Atomic data and collisional-radiative model for beryllium and its ions
title Atomic data and collisional-radiative model for beryllium and its ions
title_full Atomic data and collisional-radiative model for beryllium and its ions
title_fullStr Atomic data and collisional-radiative model for beryllium and its ions
title_full_unstemmed Atomic data and collisional-radiative model for beryllium and its ions
title_short Atomic data and collisional-radiative model for beryllium and its ions
title_sort atomic data and collisional-radiative model for beryllium and its ions
topic collisional–radiative model
elementary processes
beryllium
url http://hdl.handle.net/20.500.11937/7827