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Finite-temperature effects on interacting bosonic one-dimensional systems in disordered lattices

Academic Article
Publication Date:
2016
abstract:
We analyze the finite-temperature effects on the phase diagram describing the insulating properties of interacting one-dimensional bosons in a quasiperiodic lattice. We examine thermal effects by comparing experimental results to exact diagonalization for small-sized systems and to density-matrix renormalization group (DMRG) computations. At weak interactions, we find short thermal correlation lengths, indicating a substantial impact of temperature on the system coherence. Conversely, at strong interactions, the obtained thermal correlation lengths are significantly larger than the localization length, and the quantum nature of the T = 0 Bose-glass phase is preserved up to a crossover temperature that depends on the disorder strength. Furthermore, in the absence of disorder, we show how quasiexact finite-T DMRG computations, compared to experimental results, can be employed to estimate the temperature, which is not directly accessible in the experiment.
Iris type:
01.01 Articolo in rivista
Keywords:
matrix renormalization group; Bose-Einstein condensate; Anderson localization; optical lattice; transition; beam; insulator
List of contributors:
Modugno, Giovanni; Lucioni, Eleonora; Inguscio, Massimo; D'Errico, Chiara
Authors of the University:
D'ERRICO CHIARA
Handle:
https://iris.cnr.it/handle/20.500.14243/354325
Published in:
PHYSICAL REVIEW. A
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http://www.scopus.com/inward/record.url?eid=2-s2.0-84962815556&partnerID=q2rCbXpz
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