1ST PRINCIPLE CALCULATIONS OF QUASI-PARTICLE ENERGIES FOR BAND STRUCTURES OF SEMICONDUCTORS


Autoria(s): WANG JQ; GU ZQ; WANG BS; LI MF
Data(s)

1991

Resumo

We successfully applied the Green function theory in GW approximation to calculate the quasiparticle energies for semiconductors Si and GaAs. Ab initio pseudopotential method was adopted to generate basis wavefunctions and charge densities for calculating dielectric matrix elements and electron self-energies. To evaluate dynamical effects of screened interaction, GPP model was utilized to extend dieletric matrix elements from static results to finite frequencies. We give a full account of the theoretical background and the technical details for the first principle pseudopotential calculations of quasiparticle energies in semiconductors and insulators. Careful analyses are given for the effective and accurate evaluations of dielectric matrix elements and quasiparticle self-energies by using the symmetry properties of basis wavefunctions and eigenenergies. Good agreements between the calculated excitation energies and fundamental energy gaps and the experimental band structures were achieved.

Identificador

http://ir.semi.ac.cn/handle/172111/14339

http://www.irgrid.ac.cn/handle/1471x/101204

Idioma(s)

英语

Fonte

WANG JQ; GU ZQ; WANG BS; LI MF.1ST PRINCIPLE CALCULATIONS OF QUASI-PARTICLE ENERGIES FOR BAND STRUCTURES OF SEMICONDUCTORS,COMMUNICATIONS IN THEORETICAL PHYSICS,1991,15(2):169-194

Palavras-Chave #半导体物理 #NORM-CONSERVING PSEUDOPOTENTIALS #ANGLE-RESOLVED PHOTOEMISSION #DENSITY-FUNCTIONAL THEORY #GROUND-STATE #ZINCBLENDE SEMICONDUCTORS #CRYSTALLINE SILICON #ELECTRON #SI #INSULATORS #GAAS
Tipo

期刊论文