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Cw spectroscopy of ultrafast relaxation in semiconductor heterostructures
S. A. Lyon
, C. L. Petersen
Electrical and Computer Engineering
Princeton Institute for the Science and Technology of Materials
Research output
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Contribution to journal
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Article
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peer-review
1
Scopus citations
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Engineering & Materials Science
Hot electrons
86%
Luminescence
85%
Hot carriers
77%
Heterojunctions
75%
Spectroscopy
64%
Scattering
54%
Relaxation
54%
Semiconductor materials
51%
Conduction bands
49%
Phonons
45%
Semiconductor quantum wells
45%
Carrier concentration
41%
Experiments
20%
Mathematics
Heterostructures
100%
Spectroscopy
76%
Semiconductors
68%
Electron
59%
Gallium Arsenide
48%
Luminescence
33%
Scattering
17%
Quantum Well
16%
Experiment
14%
Phonon
14%
Conduction
12%
Probe
11%
Chemical Compounds
Semiconductor
44%
Hot Electron
41%
Spectroscopy
37%
Electron Particle
31%
LO Phonon
24%
Luminiscence Type
20%
Conduction Band
15%
Probe
8%
Time
5%
Physics & Astronomy
spectroscopy
30%
hot electrons
30%
valleys
28%
electrons
24%
luminescence
22%
scattering
14%
conduction bands
12%
quantum wells
11%
phonons
9%
probes
8%