Optical transitions and carrier relaxation in asymmetric vertically coupled quantum rings (2009)
- Authors:
- USP affiliated author: GUOQIANG, HAI - IFSC
- School: IFSC
- Subjects: SEMICONDUTORES; ÓPTICA (PROPRIEDADES)
- Language: Inglês
- Imprenta:
- Publisher: American Institute of Physics - AIP
- Place of publication: Melville
- Date published: 2009
- Source:
- Título do periódico: AIP Conference Proceedings
- ISSN: 0094-243X
- Volume/Número/Paginação/Ano: v. 1199, p. 317-318, 2009
- Conference title: International Conference on Physics of Semiconductors
-
ABNT
PIACENTE, G. e HAI, Guo Qiang. Optical transitions and carrier relaxation in asymmetric vertically coupled quantum rings. AIP Conference Proceedings. Melville: American Institute of Physics - AIP. . Acesso em: 25 jun. 2022. , 2009 -
APA
Piacente, G., & Hai, G. Q. (2009). Optical transitions and carrier relaxation in asymmetric vertically coupled quantum rings. AIP Conference Proceedings. Melville: American Institute of Physics - AIP. -
NLM
Piacente G, Hai GQ. Optical transitions and carrier relaxation in asymmetric vertically coupled quantum rings. AIP Conference Proceedings. 2009 ; 1199 317-318.[citado 2022 jun. 25 ] -
Vancouver
Piacente G, Hai GQ. Optical transitions and carrier relaxation in asymmetric vertically coupled quantum rings. AIP Conference Proceedings. 2009 ; 1199 317-318.[citado 2022 jun. 25 ] - Intersubband coupling induced effect on the spectral function of impurities in coupled double quantum wires
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- Super-ionic conductivity of 'Cd IND.x''Pb IND.1-x''F IND.2' mixed crystals studied by molecular dynamics simulations
- Composição eutética em soluções sólidas 'Cd IND.x''Pb IND.1-x''F IND.2'
- Point group simmetries and structural transitions for diatomic two-dimensional artificial molecules
- Electron correlation effects on bound electron-pair state and screening of a donor impurity center in a two-dimensional electron system
- Electron scattering through a quantum dot
- Quantum effects in a free-standing graphene lattice: path-integral against classical Monte Carlo simulations
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