Quasi-one-dimensional intersubband excitations at finite temperatures: their role in different sort of systems (2005)
- Authors:
- Autor USP: GUOQIANG, HAI - IFSC
- Unidade: IFSC
- Subjects: SEMICONDUTORES; TEMPERATURAS EXTREMAS; HÉLIO
- Language: Inglês
- Imprenta:
- Publisher: Instituto Nacional de Pesquisas Espaciais - INPE
- Publisher place: São José dos Campos
- Date published: 2005
- Source:
- Título: Program and Abstracts
- Conference titles: Brazilian Workshop on Semiconductor Physics - BWSP
-
ABNT
TAVARES, Marcos R. S. e HAI, Guo-Qiang. Quasi-one-dimensional intersubband excitations at finite temperatures: their role in different sort of systems. 2005, Anais.. São José dos Campos: Instituto Nacional de Pesquisas Espaciais - INPE, 2005. . Acesso em: 26 jan. 2026. -
APA
Tavares, M. R. S., & Hai, G. -Q. (2005). Quasi-one-dimensional intersubband excitations at finite temperatures: their role in different sort of systems. In Program and Abstracts. São José dos Campos: Instituto Nacional de Pesquisas Espaciais - INPE. -
NLM
Tavares MRS, Hai G-Q. Quasi-one-dimensional intersubband excitations at finite temperatures: their role in different sort of systems. Program and Abstracts. 2005 ;[citado 2026 jan. 26 ] -
Vancouver
Tavares MRS, Hai G-Q. Quasi-one-dimensional intersubband excitations at finite temperatures: their role in different sort of systems. Program and Abstracts. 2005 ;[citado 2026 jan. 26 ] - States of 2D electrons bound to an off-plane charge center
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- Coulomb scattering lifetimes of electrons in coupled quantum wires
- Phonon-assisted shallow-impurity transitions in semiconductor superlattices in magnetic fields
- High energy transitions of shallow magneto-donors in multiple quantum wells and electron-phonon coupling effects
- 2D states of two electrons bound to an off-plane coulomb center in a magnetic field
- Collective excitations and inelastic Coulomb scattering rate of coupled Q1D electron gases in semiconductor quantum wires
- Molécula artificial assimétrica
- Interwire element of an impurity spectral function in coupled asymmetric quantum wires
- Self-consistent calculations of electron transport through a few-electron quantum dot
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