The binding energy of full three-dimensional (3-D) charged excitons confined in a semiconductor cylindrical quantum dot (QD) is theoretically investigated using a variational procedure within the effective mass approximation. We predicted a trial wave function to not only satisfy the strong confinem
Stability of neutral and negative donor impurity in a semiconductor cylindrical quantum dot
β Scribed by S.A. Safwan; Nagwa El Meshed; A.S. Asmaa; M.H. Hekmat
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 226 KB
- Volume
- 404
- Category
- Article
- ISSN
- 0921-4526
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π SIMILAR VOLUMES
We reduce the problems of the on-and off-center D 0 and D --S-states in semiconductor heterostructures to the similar ones in an isotropic effective space with variable fractional dimension starting from the variational principle. The dimension of this space is defined as a scaling parameter that re
## Abstract The binding energy of the ground state of a charged excitonβdonor complex in a spherical semiconductor quantum dot in the presence of a homogeneous magnetic field has been calculated. The theoretical analysis is carried out using a variational approach in the framework of the adiabatic