DocumentCode :
1856334
Title :
Spin configurations in vertical quantum dots in magnetic fields: three-dimensional self-consistent simulation
Author :
Melnikov, D.V. ; Leburton, J.P. ; Austing, D.G.
Author_Institution :
Beckman Inst. for Adv. Sci. & Technol., Illinois Univ., Urbana, IL, USA
fYear :
2005
fDate :
11-15 July 2005
Firstpage :
88
Abstract :
The magnetic field dependence of the electronic properties of real single vertical quantum dots in circular and rectangular mesas is investigated within a full three-dimensional multiscale self-consistent approach without any a priori assumptions about the shape and strength of the confinement potential. Charging diagrams in a magnetic field for number of electrons up to five are also computed. Consistent with the experimental data, we found that the charging curves for the rectangular mesa dot in a magnetic field are flatter and exhibit less features than for a circular mesa dot. Evolution of the singlet-triplet energy separation in the two electron system for both dot geometries in magnetic field was also investigated. In the limit of large magnetic field, beyond the singlet-triplet transition, the singlet-triplet energy difference continues to become more negative in a circular mesa dot without any saturation whilst it is predicted to asymptotically approach zero for the rectangular mesa dot. This different behavior is attributed to the symmetry "breaking" that occurs in the singlet wave-functions in the rectangular dot.
Keywords :
magnetic field effects; semiconductor quantum dots; 3D multiscale self-consistent simulation; charging curves; circular mesas; electronic properties; energy difference; magnetic fields; rectangular mesa dot; singlet wave-functions; singlet-triplet energy separation; spin configurations; two electron system; vertical quantum dots; Councils; Electrons; Magnetic analysis; Magnetic confinement; Magnetic fields; Magnetic properties; Quantum computing; Quantum dots; Shape; US Department of Transportation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology, 2005. 5th IEEE Conference on
Print_ISBN :
0-7803-9199-3
Type :
conf
DOI :
10.1109/NANO.2005.1500699
Filename :
1500699
Link To Document :
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