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Fulde-Ferrell states in unequally charged Fermi gases
A. Levent Subaşl
, Nader Ghazanfari
Department of Physics Engineering
Center for Nonlinear Studies
Mimar Sinan Guzel Sanatlar University
Research output
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peer-review
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Citation (Scopus)
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Keyphrases
Magnetic Field
100%
Fermi Gas
100%
Atomic Gases
66%
Superfluid State
66%
Artificial Magnetic Field
66%
Center of Mass
33%
Gas Mixture
33%
Momentum Distribution
33%
Gas System
33%
Atomic Fermi Gases
33%
Torus
33%
Pair-breaking
33%
Zeeman Effect
33%
Internal State
33%
Experimental Realization
33%
Charging System
33%
Gas-coupled
33%
Orbital Coupling
33%
Inhomogeneous Case
33%
Orbital Effect
33%
Physics
Fermi Gas
100%
Magnetic Field
100%
Monatomic Gas
40%
Supercritical Fluid
40%
Center of Mass
20%
Gas Mixture
20%
Zeeman Effect
20%
Engineering
Magnetic Field
100%
Supercritical Fluid
40%
Realization
20%
Internal State
20%
Gas Mixture
20%
Chemistry
Magnetic Field
100%
Supercritical Fluid
40%
Momentum Distribution
20%
Zeeman Effect
20%
Material Science
Supercritical Fluid
100%
Gas Mixture
50%