All-electron density-functional calculations are performed to study atomic structure and electronic properties of the nonpolar surfaces, namely zinc blende (110) and wurtzite (10 (1) over bar 0) of AlN. Both surfaces are modeled using a two-dimensional periodic slab allowing the relaxation of the first two surface layers in the calculations. The results predict a small layer rotation angle accompanied by a contraction of Al-N bond length for both surfaces. These results do not follow the well-accepted rotation-relaxation model that predicts large layer rotation angles (similar to 28 degrees) with no change in the bond length for most of the III-V semiconductor surfaces. Analysis of the relaxed configurations of the AlN surfaces in terms of ...
We present first-principles study of relaxations at nonpolar surfaces of III–V nitride compounds. Th...
In this letter we present first-principles calculations of the surface energies of rock-salt (B1), z...
Structural and dynamical properties of the zinc-blende bulk phase and the (110) surface of the nitri...
All-electron density-functional calculations are performed to study atomic structure and electronic ...
All-electron density-functional calculations are performed to study atomic structure and electronic ...
All-electron density-functional calculations are performed to study atomic structure and electronic ...
Relaxations at nonpolar surfaces of semiconductor III-V compounds result from a competition between ...
Relaxations at nonpolar surfaces of semiconductor III-V compounds result from a competition between ...
The results of a study of the surface relaxation of GaN in the framework of the ab initio (all-elect...
peer reviewedThe energetics, atomic geometry, and electronic structure of semipolar (11-22) and (11-...
We present an ab-initio calculation of GaN wurtzite (1010) and zinc-blende (110) surface structures ...
We present an ab-initio calculation of GaN wurtzite (1010) and zinc-blende (110) surface structures ...
We present a systematic theoretical study of several III-nitride (110) surfaces based on accurate, p...
We present a systematic theoretical study of several III-nitride (110) surfaces based on accurate, p...
We present first-principles study of relaxations at nonpolar surfaces of III–V nitride compounds. Th...
We present first-principles study of relaxations at nonpolar surfaces of III–V nitride compounds. Th...
In this letter we present first-principles calculations of the surface energies of rock-salt (B1), z...
Structural and dynamical properties of the zinc-blende bulk phase and the (110) surface of the nitri...
All-electron density-functional calculations are performed to study atomic structure and electronic ...
All-electron density-functional calculations are performed to study atomic structure and electronic ...
All-electron density-functional calculations are performed to study atomic structure and electronic ...
Relaxations at nonpolar surfaces of semiconductor III-V compounds result from a competition between ...
Relaxations at nonpolar surfaces of semiconductor III-V compounds result from a competition between ...
The results of a study of the surface relaxation of GaN in the framework of the ab initio (all-elect...
peer reviewedThe energetics, atomic geometry, and electronic structure of semipolar (11-22) and (11-...
We present an ab-initio calculation of GaN wurtzite (1010) and zinc-blende (110) surface structures ...
We present an ab-initio calculation of GaN wurtzite (1010) and zinc-blende (110) surface structures ...
We present a systematic theoretical study of several III-nitride (110) surfaces based on accurate, p...
We present a systematic theoretical study of several III-nitride (110) surfaces based on accurate, p...
We present first-principles study of relaxations at nonpolar surfaces of III–V nitride compounds. Th...
We present first-principles study of relaxations at nonpolar surfaces of III–V nitride compounds. Th...
In this letter we present first-principles calculations of the surface energies of rock-salt (B1), z...
Structural and dynamical properties of the zinc-blende bulk phase and the (110) surface of the nitri...