We propose a method to simulate a-Si and a-Si:H using an ab initio approach based on the Harris functional and thermally-amorphisized periodically-continued cells with at least 64 atoms. Hydrogen incorporation was achieved via diffusive addition. In preparing samples that may simulate the distributions of atoms in the amorphous materials, simulated annealing calculations were carried out from given starting conditions using short and long time steps. The different time-steps led to samples having distinctly different topological disorder. The radial distribution functions (partial and total) of the resulting samples were calculated and compared with measured distributions; the agreement is very good. These comparisons allowed some tentative...
We have developed a tight-binding molecular dynamics (TBMD) approach for simulating the Si-H bonds i...
We report first principles ab initio density functional calculations of hydrogen dynamics in hydroge...
A direct ab initio calculation of network dynamics and diffusion both for the ground state and light...
We propose a method to simulate a-Si and a-Si:H using an ab initio approach based on the Harris func...
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
We present a first-principles study of the structural, electronic, and optical properties of hydroge...
We present a theoretical study of hydrogenated amorphous silicon (a-Si:H) with a device quality hydr...
Crystalline silicon is probably the best studied material, widely used by the semiconductor industry...
Abstract. Defects in disordered (amorphous) semiconductors are discussed, with an emphasis on hydrog...
Amorphous silicon (a-Si) and hydrogenated amorphous silicon (a-Si:H) have been studied with molecula...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Simple models of hydrogenated amorphous silicon (a-Si : H) consisting of hypothetical silane molecu...
Intrinsic defects in hydrogenated amorphous silicon (a-Si : H) are investigated using ab initio mole...
101 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Our calculations clarify the ...
In this paper, we have studied the shape, size, and number density of atomic microvoids in hydrogena...
We have developed a tight-binding molecular dynamics (TBMD) approach for simulating the Si-H bonds i...
We report first principles ab initio density functional calculations of hydrogen dynamics in hydroge...
A direct ab initio calculation of network dynamics and diffusion both for the ground state and light...
We propose a method to simulate a-Si and a-Si:H using an ab initio approach based on the Harris func...
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
We present a first-principles study of the structural, electronic, and optical properties of hydroge...
We present a theoretical study of hydrogenated amorphous silicon (a-Si:H) with a device quality hydr...
Crystalline silicon is probably the best studied material, widely used by the semiconductor industry...
Abstract. Defects in disordered (amorphous) semiconductors are discussed, with an emphasis on hydrog...
Amorphous silicon (a-Si) and hydrogenated amorphous silicon (a-Si:H) have been studied with molecula...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
Simple models of hydrogenated amorphous silicon (a-Si : H) consisting of hypothetical silane molecu...
Intrinsic defects in hydrogenated amorphous silicon (a-Si : H) are investigated using ab initio mole...
101 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Our calculations clarify the ...
In this paper, we have studied the shape, size, and number density of atomic microvoids in hydrogena...
We have developed a tight-binding molecular dynamics (TBMD) approach for simulating the Si-H bonds i...
We report first principles ab initio density functional calculations of hydrogen dynamics in hydroge...
A direct ab initio calculation of network dynamics and diffusion both for the ground state and light...