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Anisotropic and long-range vortex interactions in two-dimensional dipolar Bose gases

Published 14 Oct 2013 in cond-mat.quant-gas, physics.atom-ph, and quant-ph | (1310.3640v1)

Abstract: We perform a theoretical study into how dipole-dipole interactions modify the properties of superfluid vortices within the context of a two-dimensional atomic Bose gas of co-oriented dipoles. The reduced density at a vortex acts like a giant anti-dipole, changing the density profile and generating an effective dipolar potential centred at the vortex core whose most slowly decaying terms go as $1/\rho2$ and $\ln(\rho)/\rho3$. These effects modify the vortex-vortex interaction which, in particular, becomes anisotropic for dipoles polarized in the plane. Striking modifications to vortex-vortex dynamics are demonstrated, i.e. anisotropic co-rotation dynamics and the suppression of vortex annihilation.

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