DocumentCode :
2535214
Title :
Three-dimensional calculation of electronic structures in semiconductor quantum ring based artificial molecules
Author :
Li, Yiming
Author_Institution :
Dept. of Comput. Nanoelectron., Nat. Chiao Tung Univ., Hsinchu, Taiwan
fYear :
2004
fDate :
16-19 Aug. 2004
Firstpage :
474
Lastpage :
476
Abstract :
We theoretically investigate the energy spectra of vertically coupled quantum rings (VCQRs) with a three-dimensional (3D) model under applied magnetic fields. Two interesting configurations, the disk- and the conical-shaped (DI and CO) small VCQRs are explored. The electron and hole energies are significantly dominated by the inter-distance d, which plays a crucial role in the tunable states of structures. For electrons, the energy state is with a nonperiodical transition among the lowest electron. For holes, it does also demonstrate the same behavior. The energy band gap of VCQRs oscillates nonperiodically between the lowest electron and holes states as a function of external magnetic fields. In addition, the oscillation is controlled by not only the topology of VCQR and the inner (and base) radius but also the variation of d. This investigation is constructive in studying the magneto-optical phenomena of the nanoscale semiconductor artificial molecules, in particular for the laser device applications.
Keywords :
III-V semiconductors; energy gap; gallium arsenide; indium compounds; magneto-optical effects; nanostructured materials; narrow band gap semiconductors; semiconductor quantum dots; 3D model; InAs-GaAs; conical shaped vertically coupled quantum rings; disk shaped vertically coupled quantum rings; electron energy; electronic structures; energy band gap; energy spectra; hole energy; laser device applications; magnetic field effects; magneto-optical phenomena; nanoscale semiconductor artificial molecules; nonperiodic oscillation; nonperiodical transition; semiconductor quantum ring; three dimensional model; Charge carrier processes; Couplings; Electrons; Energy states; Magnetic fields; Magnetooptic devices; Photonic band gap; Quantum mechanics; Topology; Tunable circuits and devices;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology, 2004. 4th IEEE Conference on
Print_ISBN :
0-7803-8536-5
Type :
conf
DOI :
10.1109/NANO.2004.1392390
Filename :
1392390
Link To Document :
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