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First principle studies on the electronic structures and absorption spectra in KMgF3 crystal with fluorine vacancy
Authors:Fang Cheng  Qiren Zhang  Hailin Qiao  Xiuwen Zhou
Affiliation:College of Science, University of Shanghai for Science and Technology, Shanghai 200093, China
Abstract:The experiments indicate that the perfect KMgF3 crystal has no absorption in the visible range, however the electron irradiation induces a complex absorption spectrum. The absorption spectra can be decomposed by five Gaussian bands peaking at 2.5 eV (488 nm), 3.4 eV (359 nm), 4.2 eV (295 nm), 4.6 eV (270 nm) and 5.2 eV (239 nm), respectively. The purpose of this paper is to seek the origins of the absorption bands. The electronic structures and absorption spectra either for the perfect KMgF3 or for KMgF3: View the MathML source with electrical neutrality have been studied by using density functional theory code CASTEP with the lattice structure optimized. The calculation results predicate that KMgF3: View the MathML source also exhibits five absorption bands caused by the existence of the fluorine ion vacancy View the MathML source and the five absorption bands well coincide with the experimental results. It is believable that the five absorption bands are related to View the MathML source in KMgF3 crystal produced by the electron irradiation.
Keywords:KMgF3 crystal  Ab initio calculations  Defects  Electronic structures  Absorption spectra  Fluorine ion vacancy
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