The interplay between disorder and interactions is a leit-motiv of condensed-matter physics, since it constitutes the driving mechanism of the metal-insulator transition transition. Bose-Einstein condensates in optical potentials are proving to be powerful tools to quantum simulate disordered systems. We will review the main experimental and theoretical results achieved in the past few years in this rapidly developing field.
Bose–Einstein Condensates in Disordered Potentials / L. Fallani; C. Fort; M. Inguscio. - STAMPA. - (2008), pp. 119-160. [10.1016/S1049-250X(08)00012-8]
Bose–Einstein Condensates in Disordered Potentials
FALLANI, LEONARDO;FORT, CHIARA;INGUSCIO, MASSIMO
2008
Abstract
The interplay between disorder and interactions is a leit-motiv of condensed-matter physics, since it constitutes the driving mechanism of the metal-insulator transition transition. Bose-Einstein condensates in optical potentials are proving to be powerful tools to quantum simulate disordered systems. We will review the main experimental and theoretical results achieved in the past few years in this rapidly developing field.File in questo prodotto:
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Bose-Eistein condensates in disordered potentials [arxiv 0804.2888].pdf
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