VARIATIONAL COMPUTATIONS FOR EXCITONS IN QUANTUM DOTS: A QUANTUM MONTE CARLO STUDY

Author:

YILDIZ A.1,ŞAKİROĞLU S.1,DOĞAN Ü.1,AKGÜNGÖR K.1,EPİK H.1,SÖKMEN İ.1,SARI H.2,ERGÜN Y.3

Affiliation:

1. Physics Department, Dokuz Eylül University, İzmir 35160, Turkey

2. Physics Department, Cumhuriyet University, Sivas 58140, Turkey

3. Physics Department, Anadolu University, Eskişehir 26470, Turkey

Abstract

A study of variational wave functions for calculation of the ground-state energies of excitons confined in a two-dimensional (2D) disc-like and three-dimensional (3D) spherical parabolic GaAs quantum dots (QDs) is presented. We have used four variational trial wave functions constructed as the harmonic-oscillator basis multiplied by different correlation functions. The proposed correlation function formed by including linear expansion in terms of Hylleraas-like coordinates to the Jastrow factor is able to capture nearly exactly the ground-state energies of 3D excitons, and it properly account for the results of 2D excitons. Quantum Monte Carlo techniques combined with the proposed wave function are a powerful tool for studying excitons in parabolic QDs.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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