The Inter-Sublevel Optical Properties of a Spherical Quantum Dot-Quantum Well With and Without a Donor Impurity
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Date
2012
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Amer Inst Physics
Open Access Color
BRONZE
Green Open Access
Yes
OpenAIRE Downloads
72
OpenAIRE Views
156
Publicly Funded
No
Abstract
In this study, we have investigated the inter-sublevel optical properties of a core/shell/well/shell spherical quantum dot (QD) with the form of quantum dot-quantum well heterostructure. In order to determine the energy eigenvalues and corresponding wave functions, the Schrodinger equation has been solved full numerically by using shooting method in the effective mass approximation for a finite confining potential. The inter-sublevel optical absorption and the oscillator strength between ground (1 s) and excited (1 p) states have been examined based on the computed energies and wave functions. Also, the effect of a hydrogenic donor impurity, located at the center of the multi-shell spherical quantum dot (MSQD), has been researched for different core radii (R-1), shell thicknesses (T-s), and well widths (T-w) in certain potential. It is observed that the oscillator strengths and the absorption coefficients are strongly depend on the core radii and layer thicknesses of the MSQD. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4751483]
Description
Sahin, Mehmet/0000-0002-9419-1711
ORCID
Keywords
Condensed Matter - Other Condensed Matter, Condensed Matter - Mesoscale and Nanoscale Physics, optical transition, Mesoscale and Nanoscale Physics (cond-mat.mes-hall), hydrogenic impurity, FOS: Physical sciences, Multi-shell quantum dot, Other Condensed Matter (cond-mat.other)
Fields of Science
0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences
Citation
WoS Q
Q3
Scopus Q
Q2

OpenCitations Citation Count
69
Source
Journal of Applied Physics
Volume
112
Issue
5
Start Page
End Page
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Citations
CrossRef : 64
Scopus : 75
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Mendeley Readers : 17
SCOPUS™ Citations
75
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Web of Science™ Citations
68
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Page Views
12
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Downloads
4
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