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Electronic structure and optical properties of 0.5NdAlO 3-0.5CaTiO 3 from first-principles Calculation

  • Northwestern Polytechnical University Xian

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

The optimized crystal structure, energy band, density of states, and optical properties of 0.5NdAlO 3-0.5CaTiO 3 are calculated by the plane wave ultrasoft pseudopotential method based on the first-principles density functional theory. The optimized crystal parameters are in good agreement with the experimental ones and the errors are less than 1%. The calculated energy band results indicate that 0.5NdAlO 3-0.5CaTiO 3 has an indirect band gap of 0.52 eV. The energy band near Fermi level is determined by the density of states of Nd-4f, 0-2p, Nd-4p, Al-3p, Ti-4d electrons. Moreover, the dielectric function, reflectivity and refractive index of 0.5NdAlO 3-0.5CaTiO 3 are also calculated.

Original languageEnglish
Article number077702
JournalWuli Xuebao/Acta Physica Sinica
Volume61
Issue number7
StatePublished - 5 Apr 2012

Keywords

  • 0.5NdAlO -0.5CaTiO
  • Electronic structure
  • First principle
  • Optical property

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