Optical constants are important properties governing the response of a material to incident light. It follows that they are often extracted from spectra measured by absorbance, transmittance or reflectance. One convenient method to obtain optical constants is by curve fitting. Here, model curves should satisfy Kramer-Kronig relations, and preferably can be expressed in closed form or easily calculable. In this study we use dielectric constants of three different molecular ices in the infrared region to evaluate four different model curves that are generally used for fitting optical constants: (1) the classical damped harmonic oscillator, (2) Voigt line shape, (3) Fourier series, and (4) the Triangular basis. Among these, only the classical ...
Because phase changes of an IR beam traversing a thin film are difficult to measure directly, many o...
This is a proposal for laboratory measurements of the infrared (λ=1- 20 μm) optical constants of hyd...
Tauc-Lorentz model is commonly used to describe the dielectric constant of amorphous semiconductors ...
A universal method of extraction of the complex dielectric function ϵ(ω)=ϵ1(ω)+iϵ2(ω) from experimen...
Author Institution: Department of Chemistry, University of Alberta; Department of Chemistry, Univers...
The optical constants of a range of semiconductors, from wide bandgap materials (GaN and AlN) over m...
Author Institution: Department of Chemistry, Michigan state UniversityWhile dispersive infrared spec...
In the infrared region polar crystals exhibit a reflection spectrum with reststrahlen bands because ...
The complex dielectric function enables the study of a material's refractive and absorptive properti...
Usually, for the description of dielectric spectra one uses the empirical Cole-Davidson (CD) and Hav...
The transmittance values measured in IR specular external reflection (RS) or internal reflection (AT...
The Tauc–Lorentz–Urbach (TLU) dispersion model allows us to build a dielectric function from only a ...
Calculating the complex dielectric function for optical interband transitions we show that the two-...
Several strategies for the analysis of isochronal and isothermal spectra as well as complete three-d...
Models for the spectral dependence of the real and imaginary components of the dielectric function, ...
Because phase changes of an IR beam traversing a thin film are difficult to measure directly, many o...
This is a proposal for laboratory measurements of the infrared (λ=1- 20 μm) optical constants of hyd...
Tauc-Lorentz model is commonly used to describe the dielectric constant of amorphous semiconductors ...
A universal method of extraction of the complex dielectric function ϵ(ω)=ϵ1(ω)+iϵ2(ω) from experimen...
Author Institution: Department of Chemistry, University of Alberta; Department of Chemistry, Univers...
The optical constants of a range of semiconductors, from wide bandgap materials (GaN and AlN) over m...
Author Institution: Department of Chemistry, Michigan state UniversityWhile dispersive infrared spec...
In the infrared region polar crystals exhibit a reflection spectrum with reststrahlen bands because ...
The complex dielectric function enables the study of a material's refractive and absorptive properti...
Usually, for the description of dielectric spectra one uses the empirical Cole-Davidson (CD) and Hav...
The transmittance values measured in IR specular external reflection (RS) or internal reflection (AT...
The Tauc–Lorentz–Urbach (TLU) dispersion model allows us to build a dielectric function from only a ...
Calculating the complex dielectric function for optical interband transitions we show that the two-...
Several strategies for the analysis of isochronal and isothermal spectra as well as complete three-d...
Models for the spectral dependence of the real and imaginary components of the dielectric function, ...
Because phase changes of an IR beam traversing a thin film are difficult to measure directly, many o...
This is a proposal for laboratory measurements of the infrared (λ=1- 20 μm) optical constants of hyd...
Tauc-Lorentz model is commonly used to describe the dielectric constant of amorphous semiconductors ...