We present the result of a calculation for the bulk electronic structure of gallium nitride in the zincblende phase. We determine the equilibrium lattice constant, the cohesive energy and the bulk modulus in the Density Functional approach within the Local Density Approximation (DFT-LDA). The one-particle eigenvalues of the DFT Kohn-Sham equation do in principle not agree with the experimental band structure. Therefore, we calculate the quasiparticle energies by including self-energy corrections to the DFT-LDA exchange-correlation potential, with the GW approximation for the electron self-energy. We use norm-conserving pseudopotentials and a large plane-wave basis set (100 Ry cut-off) for a converged calculation in the DFT-LDA. The LDA band...
First principles calculations of the electronic band structures of zinc blende-type GaN and BN and t...
We present first-principles calculations of the structural and electronic properties of cubic for di...
In this work, we present results from self-consistent charge density functional based tight-binding ...
Abstract: We present the results of a calculation for the bulk electronic structure of gallium nitri...
Abstract: We present the results of a calculation for the bulk electronic structure of gallium nitri...
We present the results of a calculation for the bulk electronic structure of gallium nitride in the ...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The structural and electronic properties of cubic GaN are studied within the local-density approxima...
We present structural and electronic properties of the cubic structure for different concentrations ...
In this article we review our theoretical work on dislocations in GaN. The methods applied are two d...
We present first-principles calculations of the structural and electronic properties of cubic for di...
In this article we review our theoretical work on dislocations in GaN. The methods applied are two d...
First principles calculations of the electronic band structures of zinc blende-type GaN and BN and t...
We present first-principles calculations of the structural and electronic properties of cubic for di...
In this work, we present results from self-consistent charge density functional based tight-binding ...
Abstract: We present the results of a calculation for the bulk electronic structure of gallium nitri...
Abstract: We present the results of a calculation for the bulk electronic structure of gallium nitri...
We present the results of a calculation for the bulk electronic structure of gallium nitride in the ...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The results of a density functional calculation on gallium nitride are given. We use norm-conserving...
The structural and electronic properties of cubic GaN are studied within the local-density approxima...
We present structural and electronic properties of the cubic structure for different concentrations ...
In this article we review our theoretical work on dislocations in GaN. The methods applied are two d...
We present first-principles calculations of the structural and electronic properties of cubic for di...
In this article we review our theoretical work on dislocations in GaN. The methods applied are two d...
First principles calculations of the electronic band structures of zinc blende-type GaN and BN and t...
We present first-principles calculations of the structural and electronic properties of cubic for di...
In this work, we present results from self-consistent charge density functional based tight-binding ...