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Bose-Einstein Condensation in nonuniform rotation

2018/05/07 by Sahu, Saswata, Majumder, Dwipesh
#Atomic Physics (physics.atom-ph) #FOS: Physical sciences #Quantum Gases (cond-mat.quant-gas)

paper · doi:10.48550/arxiv.1805.02417

Abstract

In this work, we would like to present the Bose-Einstein Condensation in such a system where rotation is decreasing radially from the centre of the condensate. That non-uniform rotation is defined by a rotating parameter called λ. The system is defined by a modified Gross-Pitaevskii equation. The result shows very different behaviour from uniformly rotating condensate. In a uniformly rotating case there is formation triangular vortex lattice but in our case, we are watching that vortices are formed in circular ring shape above a specific amount rotation defined by λc. Below λc there is a distortion i.e. there is neither circular ring shape nor triangular symmetry among the vortices. We have studied the energy and chemical potential of the system. We have seen a sharp change in the energy and chemical potential of the systems at the point of λc. In this rich complex phase, we have drawn a phase diagram associated with the phase transition from disordered to circular ring shape pattern.

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