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Metamorphosis of a quantum wire into quantum dots
Joel Hasen
,
Loren N. Pfeiffer
, Aron Pinczuk
, Song He
, Ken W. West
, Brian S. Dennis
Research output
:
Contribution to journal
›
Article
›
peer-review
93
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Scopus citations
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Keyphrases
Quantum Dots
100%
Quantum Wire
100%
Exciton
100%
Optical Devices
33%
Low Temperature
16%
Relaxation Rate
16%
Gallium Arsenide
16%
Photoluminescence
16%
Room Temperature
16%
Semiconductors
16%
Recombination
16%
Exciton Relaxation
16%
Operating Conditions
16%
Oscillator Strength
16%
Charge Density
16%
Dissociation
16%
Binding Energy
16%
Time-resolved Photoluminescence
16%
Bound States
16%
Low Dimension
16%
Device-independent
16%
Sparse Sets
16%
Dynamical Properties
16%
Electron-hole Pair
16%
Emission Peak
16%
Electron-hole Plasma
16%
Radiative Recombination
16%
High Energy States
16%
Photoluminescence Image
16%
Wire Act
16%
Physics
Exciton
100%
Quantum Dot
100%
Quantum Wire
100%
Optical Device
28%
Holes (Electron Deficiencies)
28%
Photoluminescence
28%
Room Temperature
14%
Binding Energy
14%
Gallium Arsenide
14%
Ground State
14%
Oscillator Strength
14%
Chemistry
Exciton
100%
Quantum Dot
100%
Photoluminescence
28%
Relaxation
28%
Ambient Reaction Temperature
14%
Ground State
14%
Bound State
14%
Charge Density
14%
Binding Energy
14%
Energy State
14%
Electron-Hole Pair
14%
Gallium
14%
Electron-Hole Plasma
14%
Oscillator Strength
14%
Radiative Recombination
14%
Emission Peak
14%