Optical dielectric function model of Ozaki and Adachi [J. Appl. Phys. 78, 3380 (1995)] is augmented by introducing Gaussian-like broadening function instead of Lorentzian broadening. In this way a consistent and comparatively simple analytic formula has been obtained, which accurately describes the optical dielectric function of GaAs and AlAs in a wide spectral range between 0.1 and 6 eV. The acceptance-probability-controlled simulated annealing technique was used to fit the model to experimental data. (C) 1996 American Institute of Physics
We present a model for the dielectric function of semiconductors. It has been tested successfully fo...
The Tauc–Lorentz–Urbach (TLU) dispersion model allows us to build a dielectric function from only a ...
We present a model for the dielectric function of semiconductors. It has been tested successfully fo...
Optical dielectric function model of Ozaki and Adachi [J. Appl. Phys. 78, 3380 (1995)] is augmented ...
The optical constants of a range of semiconductors, from wide bandgap materials (GaN and AlN) over m...
Extension of Adachi's model with a Gaussian-like broadening function instead of a Lorentzian one is ...
Abstract- Extension of Adachi’s model with a Gaussian-like broadening function instead of a Lorentzi...
The extension of Adachi's model with a Gaussian-like broadening function, in place of Lorentzian, is...
In this paper we propose an analytical expression for the complex dielectric function of semiconduct...
In this work we propose an analytical expression for the complex dielectric function which includes ...
Models for the spectral dependence of the real and imaginary components of the dielectric function, ...
We have modeled the dielectric function of wurtzite AlxGa1-xN alloys for normal polarization in the ...
In this work we propose an analytical expression for the complex dielectric function which includes ...
In this work we propose an analytical expression for the complex dielectric function that includes b...
Tauc-Lorentz model is commonly used to describe the dielectric constant of amorphous semiconductors ...
We present a model for the dielectric function of semiconductors. It has been tested successfully fo...
The Tauc–Lorentz–Urbach (TLU) dispersion model allows us to build a dielectric function from only a ...
We present a model for the dielectric function of semiconductors. It has been tested successfully fo...
Optical dielectric function model of Ozaki and Adachi [J. Appl. Phys. 78, 3380 (1995)] is augmented ...
The optical constants of a range of semiconductors, from wide bandgap materials (GaN and AlN) over m...
Extension of Adachi's model with a Gaussian-like broadening function instead of a Lorentzian one is ...
Abstract- Extension of Adachi’s model with a Gaussian-like broadening function instead of a Lorentzi...
The extension of Adachi's model with a Gaussian-like broadening function, in place of Lorentzian, is...
In this paper we propose an analytical expression for the complex dielectric function of semiconduct...
In this work we propose an analytical expression for the complex dielectric function which includes ...
Models for the spectral dependence of the real and imaginary components of the dielectric function, ...
We have modeled the dielectric function of wurtzite AlxGa1-xN alloys for normal polarization in the ...
In this work we propose an analytical expression for the complex dielectric function which includes ...
In this work we propose an analytical expression for the complex dielectric function that includes b...
Tauc-Lorentz model is commonly used to describe the dielectric constant of amorphous semiconductors ...
We present a model for the dielectric function of semiconductors. It has been tested successfully fo...
The Tauc–Lorentz–Urbach (TLU) dispersion model allows us to build a dielectric function from only a ...
We present a model for the dielectric function of semiconductors. It has been tested successfully fo...