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Tunable polarons in Bose-Einstein condensates

Compagno Enrico, De Chiara Gabriele, Aggelakis Dimitrios, Palma G. Massimo

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URI: http://purl.tuc.gr/dl/dias/8EFC015A-49CA-4A24-956D-67C93343F9F7
Year 2017
Type of Item Peer-Reviewed Journal Publication
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Bibliographic Citation E. Compagno, G. De Chiara, D. G. Angelakis and G.M. Palma, "Tunable polarons in Bose-Einstein condensates," Sci. Rep., vol. 7, no.1, Dec. 2017. doi:10.1038/s41598-017-02398-5 https://doi.org/10.1038/s41598-017-02398-5
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Summary

A toolbox for the quantum simulation of polarons in ultracold atoms is presented. Motivated by the impressive experimental advances in the area of ultracold atomic mixtures, we theoretically study the problem of ultracold atomic impurities immersed in a Bose-Einstein condensate mixture (BEC). The coupling between impurity and BEC gives rise to the formation of polarons whose mutual interaction can be effectively tuned using an external laser driving a quasi-resonant Raman transition between the BEC components. Our scheme allows one to change the effective interactions between polarons in different sites from attractive to zero. This is achieved by simply changing the intensity and the frequency of the two lasers. Such arrangement opens new avenues for the study of strongly correlated condensed matter models in ultracold gases.

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