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Commensurability oscillations of hole-flux composite fermions
D. Kamburov
,
M. Shayegan
,
L. N. Pfeiffer
, K. W. West
, K. W. Baldwin
Electrical and Computer Engineering
Princeton Materials Institute
Princeton Quantum Initiative
Research output
:
Contribution to journal
›
Article
›
peer-review
29
Scopus citations
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Keyphrases
Commensurability Oscillations
100%
Composite Fermions
100%
Fill Factor
25%
Third Order
25%
Strain-induced
25%
Mean Free Path
25%
Periodic Potential
25%
Ballistic Transport
25%
GaAs Quantum Well
25%
Two-dimensional Hole System
25%
Oscillation
25%
Spin-polarized
25%
High Mobility
25%
Effective Magnetic Field
25%
Ballistic
25%
Potential Modulation
25%
Earth and Planetary Sciences
Quantum Wells
100%
Mean Free Path
100%
Physics
Fermion
100%
Magnetic Field
25%
Quantum Wells
25%
Mean Free Path
25%
Chemistry
Magnetic Field
100%