Luminescence from miniband states in heavily doped superlattices (2003)
- Authors:
- USP affiliated authors: HENRIQUES, ANDRE BOHOMOLETZ - IF ; QUIVY, ALAIN ANDRE - IF
- Unidade: IF
- Assunto: LUMINESCÊNCIA
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: Book of Abstracs
- Volume/Número/Paginação/Ano: Fortaleza : DF/UFC, 2003
- Conference titles: Brazilian Workshop on Semiconductor Physics
-
ABNT
OLIVEIRA, R. F. et al. Luminescence from miniband states in heavily doped superlattices. 2003, Anais.. Fortaleza: DF/UFC, 2003. . Acesso em: 20 abr. 2024. -
APA
Oliveira, R. F., Henriques, A. B., Lamas, T. E., & Quivy, A. A. (2003). Luminescence from miniband states in heavily doped superlattices. In Book of Abstracs. Fortaleza: DF/UFC. -
NLM
Oliveira RF, Henriques AB, Lamas TE, Quivy AA. Luminescence from miniband states in heavily doped superlattices. Book of Abstracs. 2003 ;[citado 2024 abr. 20 ] -
Vancouver
Oliveira RF, Henriques AB, Lamas TE, Quivy AA. Luminescence from miniband states in heavily doped superlattices. Book of Abstracs. 2003 ;[citado 2024 abr. 20 ] - Optical measurement of miniband dispersion and bandgap renormalization in modulation-doped AlGaAs/GaAs superlattices
- Measurement of miniband parameters of a doped superlattice by photoluminescence in high magnetic fields
- Anisotropy of electron and hole g-factors in ('IN','GA')'AS' quantum dots
- Light-induced magnetism using picosecond and femtosecond pulses in semiconductor nanostructures
- Tunable phase in the spin coherence generation of self-assembled (In,Ga)As quantum dots
- Spin coherence generation in negatively charged self-assembled (In,Ga)As quantum dots by pumping excited trion states
- Measurement of miniband parameters of a doped superlattice by photoluminescence in high magnetic fields
- Dispersion of electron g-factor with optical transition energy in ('IN','GA')'AS'/ 'GA''AS' self-assembled quantum dots
- Atomically resolved study of the morphology change of InAs/GaAs quantum dot layers induced by rapid thermal annealing
- Theoretical investigation of the photoluminescence and fermi surface of periodically delta-dopped 'GA''AS'
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