Optical properties of ZnSe
- 15 April 1991
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 43 (12) , 9569-9577
- https://doi.org/10.1103/physrevb.43.9569
Abstract
We have studied the optical response of ZnSe in the 1.5–5.3-eV photon-energy range at room temperature by spectroscopic ellipsometry. The measured dielectric-function spectra reveal distinct structures at energies of the , +, , and + critical points (CP’s). These data are analyzed on the basis of a simplified model of the interband transitions. The -(+) structures are characterized by a three-dimensional CP, the -(+) structures by a two-dimensional CP, and the structure by a classical Lorentzian oscillator (damped harmonic oscillator). The experimental data could not be explained within the framework of the one-electron approximation, since excitonic effects may profoundly modify the CP singularity structure. The model is thus made to account for the excitonic effects at these CP’s; our results are in satisfactory agreement with the experiment over the entire range of photon energies. Dielectric-function-related optical constants of ZnSe, such as the refractive index, the extinction coefficient, and the absorption coefficient, are also presented and analyzed.
Keywords
This publication has 67 references indexed in Scilit:
- Temperature dependence of the dielectric function and interband critical points in siliconPhysical Review B, 1987
- Temperature dependence of the dielectric function of germaniumPhysical Review B, 1984
- Dielectric functions and optical parameters of Si, Ge, GaP, GaAs, GaSb, InP, InAs, and InSb from 1.5 to 6.0 eVPhysical Review B, 1983
- Far-Ultraviolet Reflectance of II-VI Compounds and Correlation with the Penn—Phillips GapPhysical Review B, 1973
- Calculated and Measured Reflectivity of ZnTe and ZnSePhysical Review B, 1970
- The optical properties and electronic band structure of zinc selenideSolid State Communications, 1969
- Thermoreflectance in SemiconductorsPhysical Review B, 1968
- Absorption Spectrum of Germanium and Zinc-Blende-Type Materials at Energies Higher than the Fundamental Absorption EdgeJournal of Applied Physics, 1963
- Fundamental Reflectivity Spectrum of Semiconductors with Zinc-Blende StructureJournal of Applied Physics, 1961
- Some Electrical and Optical Properties of ZnSeJournal of Applied Physics, 1961