Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/27117

TítuloSuperfluidity breakdown of periodic matter waves in quasi one-dimensional annular traps via resonant scattering with moving defects
Autor(es)Yulin, Alex V.
Bludov, Yuliy V.
Konotop, Vladimir V.
Kuzmiak, Vladimir
Salerno, Mario
Palavras-chaveBose-Einstein condensate
Moving defect
Data25-Mar-2013
EditoraAmerican Physical Society
RevistaPhysical Review A
CitaçãoA.V. Yulin, Yu.V. Bludov, V.V. Konotop, V. Kuzmiak, M. Salerno, Phys. Rev. A87, 033625 (2013).
Resumo(s)We investigate, both analytically and numerically, the quasisuperfluidity properties of periodic Bose-Einstein condensates (BECs) in a quasi-one-dimensional (1D) ring with optical lattices (OL) of different kinds (linear and nonlinear) and with a moving defect of an infinite mass inside. To study the dynamics of the condensate we used a mean-field approximation describing the condensate by use of the Gross-Pitaevskii equation for the order parameter. We show that the resonant scattering of sound Bloch waves with the defect profoundly affect BEC superfluidity. In particular, a moving defect always leads to the breakdown of superfluidity independently of the value of its velocity. For weak periodic potentials the superfluidity breakdown may occur on a very long time scale (quasisuperfluidity) but the breakdown process can be accelerated by increasing the strength of the OL. Quite remarkably, we find that when the length of the ring is small enough to imply the discreteness of the reciprocal space, it becomes possible to avoid the resonant scattering and to restore quasi-superfluidity.
TipoArtigo
URIhttps://hdl.handle.net/1822/27117
DOI10.1103/PhysRevA.87.033625
ISSN1050-2947
1094-1622
Versão da editorahttp://link.aps.org
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CDF - CEP - Artigos/Papers (with refereeing)

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