Correlations and superfluidity of a one-dimensional Bose gas in a quasiperiodic potential
Alberto Cetoli, Emil Lundh
Abstract
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Alberto Cetoli, Emil Lundh
Abstract
Open-access reader
We consider the correlations and superfluid properties of a Bose gas in an external potential. Using a Bogoliubov scheme, we obtain expressions for the correlation function and the superfluid density in an arbitrary external potential. These expressions are applied to a one-dimensional system at zero temperature subject to a quasiperiodic modulation. The critical parameters for the Bose glass transition are obtained using two different criteria and the results are compared. The Lifshitz glass is seen to be the limiting case for vanishing interactions.
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We consider the correlations and superfluid properties of a Bose gas in an external potential. Using a Bogoliubov scheme, we obtain expressions for the correlation function and the superfluid density in an arbitrary external potential. These expressions are applied to a one-dimensional system at zero temperature subject to a quasiperiodic modulation. The critical parameters for the Bose glass transition are obtained using two different criteria and the results are compared. The Lifshitz glass is seen to be the limiting case for vanishing interactions.
Key concepts: Quasiperiodic function, Bose gas, Superfluidity, Limiting, Physics, Condensed matter physics, Quantum mechanics, Bose–Einstein condensate