Impurities induced vortex lattice melting and turbulence in rotating Bose-Einstein condensates
Rony Boral, Swarup K. Sarkar, Paulsamy Muruganandam, Pankaj K., Mishra

TL;DR
This paper studies how impurities, both static and dynamic, induce vortex lattice melting and turbulence in rotating Bose-Einstein condensates, revealing a universal angular momentum behavior and turbulence signatures.
Contribution
It introduces a comprehensive analysis of impurity effects on vortex lattice melting and turbulence in rotating BECs, including static and dynamic impurity models and their impact on vortex structure and angular momentum.
Findings
Impurities disrupt vortex lattice, causing a phase transition to a disordered state.
Vortex lattice melting exhibits a power-law angular momentum dependence with exponent ~1.73.
Turbulence signatures emerge in the vortex-melted state due to impurities.
Abstract
We investigate the impact of various impurities on rotating Bose-Einstein condensates confined within two-dimensional harmonic and optical lattice potentials. Without impurities, the rotating condensates display an organized square lattice pattern of vortices due to the influence of a square optical lattice. The introduction of impurity potentials disrupts this lattice structure, inducing a phase transition from an ordered state to a disordered state. Our analysis encompasses both static and dynamic types of impurities. The static impurities are implemented using a randomly varying potential with a spatially random amplitude. The transformation of the vortex lattice structure, in this case, relies on the strength and lattice constant of the impurity potential. For dynamical impurities, we employ a Gaussian obstacle that orbits around the condensate at a specific distance from its…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates
