First-principles and experimental characterization of the electronic and optical properties of CaS and CaO

Poncé, Samuel;Bertrand, Bruno;Smet, Philip F.;Poelman, Dirk;Mikami, Masayoshi;Gonze, Xavier

Description

Doped alkaline-earth chalcogenides are interesting photoluminescent materials for opto-electronic applications. It is crucial to have an extended knowledge about the undoped bulk CaS and CaO since all the excited state properties of the doped material heavily depend on it. In this work we investigate the structural parameters, electronic band structures, macroscopic dielectric constants and absorption spectra for CaS and CaO compounds. Their quasi-particle band structure in the GW approximation yields a value of 4.28 eV and 6.02 eV for the indirect theoretical particle gap of CaS and CaO, respectively. The imaginary part of the macroscopic dielectric function e(omega) is computed including excitonic effects through the Bethe–Salpeter equation. The onset of absorption is within 0.1 eV of the experimental one and the calculated spectrum shows a qualitative agreement with experiment. Our computed exciton binding energies are 0.27 eV and 0.40 eV for CaS and CaO, respectively.

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Metrics

Dataset Index

0.9

FAIR Score

88%

Citations

1

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0

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Publication Details

DOI

Publisher

Materials Cloud

License

Creative Commons Attribution 4.0 International

Assigned Domain

Subfield

Materials Chemistry

Field

Materials Science

Domain

Physical Sciences

Confidence Score

46%

Source

Scholar Data Model

Keywords

CaSCaOfirst principlesab initioDensity functional theoryBethe–SalpeterExcitonMacroscopic dielectric functionCalcium chalcogenidesAbsorption spectrum

Normalization Factors

FT

50.00

CTw

1.00

MTw

1.00