Optical absorption and luminescence energies of F centers in CaO from ab initio embedded cluster calculations

Fecha de publicación

2020-02-19T12:17:30Z

2020-02-19T12:17:30Z

2006-08-21

2020-02-19T12:17:30Z

Resumen

We calculated the optical absorption and luminescence energies of electrons trapped at oxygen vacancies in CaO using a consistent embedded cluster method which accounts for the long-range polarization effects and partial covalence of CaO. Optical absorption and luminescence energies of neutral 􏰏F center􏰎 and positively charged 􏰏F+ center􏰎 vacancies are calculated by means of time dependent density functional theory using the B3LYP exchange-correlation density functional. Our results demonstrate that using large basis sets to describe a diffuse nature of excited states, and properly accounting for long-range polarization induced by charged and excited defect states, is crucial for accurate predictions of optical excitation and luminescence energies of these defects.

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American Institute of Physics

Documentos relacionados

Reproducció del document publicat a: https://doi.org/10.1063/1.2337292

Journal of Chemical Physics, 2006, vol. 125, num. 7, p. 074710-1-074710-9

https://doi.org/10.1063/1.2337292

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(c) American Institute of Physics , 2006

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