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Observation of exciton and biexciton processes in Cd sub(x)Zn sub(1-x)Se/ZnSe (x identical with 0.2)

Exciton and biexciton lines in Cd sub(0.2)Zn sub(0.8)Sc/ZnSe multiquantum well structures are observed in low temperature photoluminescence. The assignment of exciton and biexciton transitions was verified by examining their energy positions, intensity dependence on exciton density, relative decay l... Full description

Journal Title: Applied Physics Letters 1995, Vol.67(10), pp.1450-1452
Main Author: Wang, Li
Other Authors: Simmons, Joseph
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: ISSN: 0003-6951
Link: http://search.proquest.com/docview/27309010/?pq-origsite=primo
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title: Observation of exciton and biexciton processes in Cd sub(x)Zn sub(1-x)Se/ZnSe (x identical with 0.2)
format: Article
creator:
  • Wang, Li
  • Simmons, Joseph
subjects:
  • Excitons
  • Photoluminescence
  • Semiconducting Cadmium Compounds
  • Semiconducting Zinc Compounds
  • Molecular Beam Epitaxy
  • Polarization
  • Electron Transitions
  • Energy Gap
  • Calculations
  • Binding Energy
  • 712.1.2 Compound Semiconducting Materials
  • 931.3 Atomic and Molecular Physics
  • 741.1 Light/Optics
  • 933.1.2 Crystal Growth
  • 921.6 Numerical Methods (So)
  • Article
ispartof: Applied Physics Letters, 1995, Vol.67(10), pp.1450-1452
description: Exciton and biexciton lines in Cd sub(0.2)Zn sub(0.8)Sc/ZnSe multiquantum well structures are observed in low temperature photoluminescence. The assignment of exciton and biexciton transitions was verified by examining their energy positions, intensity dependence on exciton density, relative decay lifetimes, exciton polarization dependence, and spectral line shapes. The experimental data agree well with current theories on exciton and biexciton formation.
language: eng
source:
identifier: ISSN: 0003-6951
fulltext: fulltext
issn:
  • 00036951
  • 0003-6951
url: Link


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titleObservation of exciton and biexciton processes in Cd sub(x)Zn sub(1-x)Se/ZnSe (x identical with 0.2)
creatorWang, Li ; Simmons, Joseph
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ispartofApplied Physics Letters, 1995, Vol.67(10), pp.1450-1452
identifierISSN: 0003-6951
subjectExcitons ; Photoluminescence ; Semiconducting Cadmium Compounds ; Semiconducting Zinc Compounds ; Molecular Beam Epitaxy ; Polarization ; Electron Transitions ; Energy Gap ; Calculations ; Binding Energy ; 712.1.2 Compound Semiconducting Materials ; 931.3 Atomic and Molecular Physics ; 741.1 Light/Optics ; 933.1.2 Crystal Growth ; 921.6 Numerical Methods (So) ; Article
descriptionExciton and biexciton lines in Cd sub(0.2)Zn sub(0.8)Sc/ZnSe multiquantum well structures are observed in low temperature photoluminescence. The assignment of exciton and biexciton transitions was verified by examining their energy positions, intensity dependence on exciton density, relative decay lifetimes, exciton polarization dependence, and spectral line shapes. The experimental data agree well with current theories on exciton and biexciton formation.
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titleObservation of exciton and biexciton processes in Cd sub(x)Zn sub(1-x)Se/ZnSe (x identical with 0.2)
descriptionExciton and biexciton lines in Cd sub(0.2)Zn sub(0.8)Sc/ZnSe multiquantum well structures are observed in low temperature photoluminescence. The assignment of exciton and biexciton transitions was verified by examining their energy positions, intensity dependence on exciton density, relative decay lifetimes, exciton polarization dependence, and spectral line shapes. The experimental data agree well with current theories on exciton and biexciton formation.
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titleObservation of exciton and biexciton processes in Cd sub(x)Zn sub(1-x)Se/ZnSe (x identical with 0.2)
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4Molecular Beam Epitaxy
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6Electron Transitions
7Energy Gap
8Calculations
9Binding Energy
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11931.3 Atomic and Molecular Physics
12741.1 Light/Optics
13933.1.2 Crystal Growth
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atitleObservation of exciton and biexciton processes in Cd sub(x)Zn sub(1-x)Se/ZnSe (x identical with 0.2)
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abstractExciton and biexciton lines in Cd sub(0.2)Zn sub(0.8)Sc/ZnSe multiquantum well structures are observed in low temperature photoluminescence. The assignment of exciton and biexciton transitions was verified by examining their energy positions, intensity dependence on exciton density, relative decay lifetimes, exciton polarization dependence, and spectral line shapes. The experimental data agree well with current theories on exciton and biexciton formation.
urlhttp://search.proquest.com/docview/27309010/
doi10.1063/1.114491
eissn10773118
date1995-09-04