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Numerical methods and programming, 2011, Volume 12, Issue 4, Pages 443–449
(Mi vmp213)
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Вычислительные методы и приложения
Calculation of excited states of the polycation Bi$_5^3+$ by the
spin-orbit configuration interaction method
A. N. Romanova, O. A. Kondakovaa, D. N. Vtyurinab, A. V. Sulimovb, V. B. Sulimova a M.V. Lomonosov Moscow State University, Research Computing Center
b Dimonta company
Abstract:
The polycation Bi$_5^3+$ is one of the possible emitters of the broadband NIR
luminescence from optics materials doped by bismuth. The Bi$_5^3+$ lowest
excited states are calculated by the spin-orbit configuration interaction method.
These excited states are responsible for the optical absorption features in NIR,
visible and near UV spectral ranges. The numerical results are in good agreement
with the experimental data corresponding to the Bi$_5^3+$ absorption spectrum
in chloroaluminate melts. The existence of the lowest excited state with radiative
transition to the ground state in NIR is confirmed. Thus, the Bi$_5^3+$ polycation
can be a source of the broadband NIR emission in bismuth doped optical materials.
Keywords:
quantum chemistry; Bismuth polications; spectroscopy; subvalent states.
Citation:
A. N. Romanov, O. A. Kondakova, D. N. Vtyurina, A. V. Sulimov, V. B. Sulimov, “Calculation of excited states of the polycation Bi$_5^3+$ by the
spin-orbit configuration interaction method”, Num. Meth. Prog., 12:4 (2011), 443–449
Linking options:
https://www.mathnet.ru/eng/vmp213 https://www.mathnet.ru/eng/vmp/v12/i4/p443
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Statistics & downloads: |
Abstract page: | 125 | Full-text PDF : | 82 |
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