We explore the atomic structures and electronic properties of the As-terminated GaAs(001) surface in the presence of hydrogen based on ab initio density functional theory. We calculate a phase diagram dependent on the chemical potentials of As and H, showing which surface reconstruction is the most stable for a given set of chemical potentials. The findings are supported by the calculation of energy landscapes of the surfaces, which indicate possible H bonding sites as well as the density of states, which show the effect of hydrogen adsorption on the states near the fundamental band gap
In this work, we use the first-principles density-functional approach to study the electronic struct...
[[abstract]]A series of ab initio simulations, based on density functional theory, of the structure ...
Animation illustrating the use of Density Functional Theory for studying problems in materials scien...
The behavior of hydrogen on the 110 surfaces of III-V semiconductors is examined using ab initio den...
The atomic geometry and the electronic structure of GaAs(1 1 0) and Si(1 1 1) with full coverage of ...
In this dissertation, we study the electronic and geometric structure of semiconductors and metal su...
The adsorption of hydrogen at nonpolar GaN(1¯100) surfaces and its impact on the electronic and vibr...
The interactions of oxygen atoms on the GaAs(001)-beta 2(2x4) surface and the passivation of oxidize...
We analyzed atomic hydrogen chemisorption on GaAs(110) surfaces through synchrotron radiation photoe...
We present a synchrotron-radiation photoemission investigation of hydrogen chemisorption on GaAs(110...
The work described in this dissertation includes fundamental investigations into three surface proce...
Adsorption of alkanethiols on GaAs (001) surface under low coverage conditions was studied using den...
This effort is a fundamental study of local chemical, electronic and physical behavior of metal and ...
Hydrogen adsorption on PdGa intermetallic compound is analyzed using density functional theory (DFT)...
A fully self-consistent pseudopotential calculation of the electronic properties of atomic hydrogen ...
In this work, we use the first-principles density-functional approach to study the electronic struct...
[[abstract]]A series of ab initio simulations, based on density functional theory, of the structure ...
Animation illustrating the use of Density Functional Theory for studying problems in materials scien...
The behavior of hydrogen on the 110 surfaces of III-V semiconductors is examined using ab initio den...
The atomic geometry and the electronic structure of GaAs(1 1 0) and Si(1 1 1) with full coverage of ...
In this dissertation, we study the electronic and geometric structure of semiconductors and metal su...
The adsorption of hydrogen at nonpolar GaN(1¯100) surfaces and its impact on the electronic and vibr...
The interactions of oxygen atoms on the GaAs(001)-beta 2(2x4) surface and the passivation of oxidize...
We analyzed atomic hydrogen chemisorption on GaAs(110) surfaces through synchrotron radiation photoe...
We present a synchrotron-radiation photoemission investigation of hydrogen chemisorption on GaAs(110...
The work described in this dissertation includes fundamental investigations into three surface proce...
Adsorption of alkanethiols on GaAs (001) surface under low coverage conditions was studied using den...
This effort is a fundamental study of local chemical, electronic and physical behavior of metal and ...
Hydrogen adsorption on PdGa intermetallic compound is analyzed using density functional theory (DFT)...
A fully self-consistent pseudopotential calculation of the electronic properties of atomic hydrogen ...
In this work, we use the first-principles density-functional approach to study the electronic struct...
[[abstract]]A series of ab initio simulations, based on density functional theory, of the structure ...
Animation illustrating the use of Density Functional Theory for studying problems in materials scien...