All-electron density functional methods have been used to calculate the structures and energies of silicon/hydrogen clusters with up to 148 atoms. Vibration frequencies are calculated for those clusters with less than 75 atoms. In addition to hydrogen-terminated clusters based on the structures of bulk Si, we study structures involving vacancies, divacancies, and additional H atoms. The results are compared with earlier work and provide vibration fingerprints that should aid the interpretation of measurements (such as infrared spectra) of hydrogenated crystalline and amorphous silicon
Defects in crystalline silicon consisting of a silicon self-interstitial atom and one, two, three, o...
A study of the vibrational properties of amorphous silicon alloys is presented. Using the Cluster-Be...
Three separate topics are presented covering the temperature dependence of isotropic hyperfine coupl...
We have investigated the structural and electronic properties of both bare and hydrogenated Si-m (m ...
The geometric, electronic, and photoabsorption properties of some hydrogenated silicon clusters are ...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use first principles calculations and elasticity theory to study hydrogen aggregation in silicon....
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
The atomic complex formed by silicon, hydrogen, and aluminum atoms has been investigated by use of t...
The atomic complex formed by silicon, hydrogen, and aluminum atoms has been investigated by use of t...
We have studied the normal modes of hydrogenated and oxidized silicon nanocrystals, namely SiH4 (sil...
We present a systematic study on hydrogenated silicon m vacancies above saturation. For each system ...
101 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Our calculations clarify the ...
Quantum-chemical density-functional theory (DFT) calculations, using the local-density approximation...
We present a theoretical study of hydrogenated amorphous silicon (a-Si:H) with a device quality hydr...
Defects in crystalline silicon consisting of a silicon self-interstitial atom and one, two, three, o...
A study of the vibrational properties of amorphous silicon alloys is presented. Using the Cluster-Be...
Three separate topics are presented covering the temperature dependence of isotropic hyperfine coupl...
We have investigated the structural and electronic properties of both bare and hydrogenated Si-m (m ...
The geometric, electronic, and photoabsorption properties of some hydrogenated silicon clusters are ...
We use a molecular-dynamics simulation within density-functional theory to prepare realistic structu...
We use first principles calculations and elasticity theory to study hydrogen aggregation in silicon....
Hydrogenated amorphous silicon is a relatively new material with device applications including phot...
The atomic complex formed by silicon, hydrogen, and aluminum atoms has been investigated by use of t...
The atomic complex formed by silicon, hydrogen, and aluminum atoms has been investigated by use of t...
We have studied the normal modes of hydrogenated and oxidized silicon nanocrystals, namely SiH4 (sil...
We present a systematic study on hydrogenated silicon m vacancies above saturation. For each system ...
101 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Our calculations clarify the ...
Quantum-chemical density-functional theory (DFT) calculations, using the local-density approximation...
We present a theoretical study of hydrogenated amorphous silicon (a-Si:H) with a device quality hydr...
Defects in crystalline silicon consisting of a silicon self-interstitial atom and one, two, three, o...
A study of the vibrational properties of amorphous silicon alloys is presented. Using the Cluster-Be...
Three separate topics are presented covering the temperature dependence of isotropic hyperfine coupl...