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Linear and nonlinear optical absorption coefficients and binding energy of a spherical quantum dot
Superlattices and Microstructures Cilt 47 ss. 556-566
Scopus Toplam 195 atıf DOI
The binding energy and wavefunctions of the 1s, 1p, 1d and 1f energy states of a spherical quantum dot (QD) with parabolic potential were calculated by using a method which is a combination of the quantum genetic algorithm (QGA) and the Hartree-Fock-Roothaan (HFR) approach. In addition, the linear and the third-order nonlinear optical absorption coefficients based on optical transitions in QDs with and without impurity were calculated. The results show that the parabolic potential has a great effect not only on the binding energies and but also on the optical absorption coefficients. Moreover, the calculated results also reveal that the linear and nonlinear optical absorption coefficients are strongly affected by the existence of impurity and the incident optical intensity. © 2009 Elsevier Ltd. All rights reserved.
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Transitions among doped gaas quantum dot eigenstates initiated by time-varying impurity potential: Influence of noise
Biointerface Research in Applied Chemistry
Scopus