Applied Physics Letters · 2010 · 363 citations · 16 references
Materials ScienceOptical Band-gap EnergyOptical MaterialsNanostructured Wo3 FilmEngineeringPhotoluminescenceOptical PropertiesOptoelectronic MaterialsApplied PhysicsAbsorption SpectroscopyPhotophysical PropertyLight AbsorptionChemistryCubic Crystal StructureOptical SpectroscopyTungsten TrioxideThin Film ProcessingNanophotonics
The optical band-gap energy of a nanostructured tungsten trioxide film is determined using the photoacoustic spectroscopy method under continuous light excitation. The mechanism of the photoacoustic signal generation is discussed. The band-gap energy is also computed by other methods. The absorption coefficient as well as the band-gap energy of three different crystal structures of tungsten trioxide is calculated by a first-principles Green’s function approach using the projector augmented wave method. The theoretical study indicates that the cubic crystal structure shows good agreement with the experimental data.
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Projector augmented-wave method
Peter E. Blöchl · Physical review. B, Condensed matter · 1994 · 87.4K citations
Quasiparticle band structure based on a generalized Kohn-Sham scheme
F. Fuchs, J. Furthmüller, F. Bechstedt et al. · Physical Review B · 2007 · 539 citations · Full text