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Ab-initio study on the electronic, optical and ferroelectric properties of LiOsO3.

Authors :
He, Chao
Ma, Zuju
Sun, Bao-Zhen
Li, Qiaohong
Wu, Kechen
Source :
Computational Materials Science. Jul2015, Vol. 105, p11-17. 7p.
Publication Year :
2015

Abstract

A comprehensive investigation has been made on the ground state, magnetic, ferroelectric and optical properties of the recently synthesized ferroelectric-like LiOsO 3 by first-principle calculations. It is found that the ground state of perfect LiOsO 3 is G type antiferromagnetic (G-AFM) order by both LSDA + U with U eff > 0 eV and HSE. For the G-AFM order, when U eff > 1.75 eV the charge gap opens for LiOsO 3 while the gap is about 0.60 eV by HSE. So the perfect LiOsO 3 should be a G-AFM semiconductor. As for the Li-defected Li 0.94 OsO 3 , the Fermi level shifts to the valence bands. On the other hand the translational periodicity is destroyed by various defects, leading to the disappearance of magnetic order which is responsible for the ferroelectric metal state observed in experiment. This is proved by the decrease of the Os average magnetic moments of Li-defected LiOsO 3 . The calculated spontaneous polarization of perfect LiOsO 3 is about 22.23 μC/cm 2 and the largest component of second order nonlinear optical coefficient is 80.795 pm/V, which indicate that it should be a potential ferroelectric and nonlinear optical material. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09270256
Volume :
105
Database :
Academic Search Index
Journal :
Computational Materials Science
Publication Type :
Academic Journal
Accession number :
102852088
Full Text :
https://doi.org/10.1016/j.commatsci.2015.04.016