Title of article
Lattice bosons in a quasi-disordered environment: The effects of next-nearest-neighbor hopping on localization and Bose–Einstein condensation
Author/Authors
Ramakumar، نويسنده , , R. and Das، نويسنده , , A.N. and Sil، نويسنده , , S.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
10
From page
214
To page
223
Abstract
We present a theoretical study of the effects of the next-nearest-neighbor (NNN) hopping ( t 2 ) on the properties of non-interacting bosons in optical lattices in the presence of an Aubry–André quasi-disorder. First we investigate, employing exact diagonalization, the effects of t 2 on the localization properties of a single boson. The localization is monitored using an entanglement measure as well as with inverse participation ratio. We find that the sign of t 2 has a significant influence on the localization effects. We also provide analytical results in support of the trends found in the localization behavior. Further, we extend these results including the effects of a harmonic potential which obtains in experiments. Next, we study the effects of t 2 on Bose–Einstein condensation. We find that, a positive t 2 strongly enhances the low temperature thermal depletion of the condensate while a negative t 2 reduces it. It is also found that, for a fixed temperature, increasing the quasi-disorder strength reduces the condensate fraction in the extended regime while enhancing it in the localized regime. We also investigate the effects of boundary conditions and that of the phase of the AA potential on the condensate. These are found to have significant effects on the condensate fraction in the localization transition region.
Keywords
Bose–Einstein condensation , Optical lattices , Disorder effects , Thermodynamic properties
Journal title
Physica A Statistical Mechanics and its Applications
Serial Year
2014
Journal title
Physica A Statistical Mechanics and its Applications
Record number
1738133
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