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Comparative Analysis of the Electronic Structure and Nonlinear Optical Susceptibility of α-TeO<sub>2</sub> and β-TeO<sub>3</sub> Crystals
24
Citations
43
References
2017
Year
Optical MaterialsEngineeringNonlinear OpticsHuge Optical NonlinearityElectronic StructureOptical PropertiesElectronic StatesQuantum MaterialsComparative AnalysisOptical SpectroscopyPhotonicsPhysicsCrystal MaterialNon-linear OpticPhotonic MaterialsCrystalline Teo3Nonlinear Optical SusceptibilityNonlinear CrystalsSolid-state PhysicCondensed Matter PhysicsApplied PhysicsCrystals
The hypothesis of the huge optical nonlinearity of the crystalline TeO3, recently advanced on the basis of the quantum-mechanical simulations, is tested. Electronic band gaps of α-TeO2 and β-TeO3 crystals are determined by diffuse reflectance measurements. The DFT+U method is applied to calculate electronic band gap Eg and the third-order nonlinear dielectric susceptibility χ(3). The χ(3)(TeO3) is about two times lower than the χ(3)(TeO2) in spite of the fact that the Eg(TeO3) is narrower than Eg(TeO2). It is shown that this peculiarity is related to the 5s(Te) electronic states which are occupied in TeO2 and are vacant in TeO3. This distinction is due to the specific electronic state related to the electron lone pairs localized on the Te(IV) atoms.
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