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Nonequilibrium dynamics of Tonks-Girardeau gases on optical lattices
M. Rigol
, A. Muramatsu
Physics
Institute for Computational and Data Sciences (ICDS)
Research output
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Contribution to journal
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Article
›
peer-review
3
Scopus citations
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Dive into the research topics of 'Nonequilibrium dynamics of Tonks-Girardeau gases on optical lattices'. Together they form a unique fingerprint.
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Keyphrases
Optical Lattice
100%
Non-equilibrium Dynamics
100%
Tonks-Girardeau Gas
100%
Momentum Distribution
50%
Fermionic Systems
25%
Eigenstates
25%
Range Correlation
25%
Motivation
25%
Atom Laser
25%
Fermions
25%
Bosonic
25%
Strong Correlation
25%
Bosons
25%
State Dynamics
25%
Condensed Matter Physics
25%
One-dimensional Lattice
25%
Out-of-equilibrium
25%
Quantum Gases
25%
Experimental Realization
25%
One-particle Density Matrix
25%
Universal Property
25%
Ultracold Atoms
25%
Quasicondensate
25%
Jordan-Wigner Transformation
25%
Centre of Interests
25%
Strongly Interacting Systems
25%
Free Evolution
25%
Fock State
25%
Fermionization
25%
Physics
Optical Lattice
100%
Distribution Function
50%
Ground State
50%
Fermion
50%
Coherence
50%
Condensed Matter Physics
50%
Quantum Gas
50%
Atom Laser
50%