arXiv · 1508.00958
Periodic shedding of vortex dipoles from a moving penetrable obstacle in a Bose-Einstein condensate
Abstract
We investigate vortex shedding from a moving penetrable obstacle in a highly oblate Bose-Einstein condensate. The penetrable obstacle is formed by a repulsive Gaussian laser beam that has the potential barrier height lower than the chemical potential of the condensate. The moving obstacle periodically generates vortex dipoles and the vortex shedding frequency $f_v$ linearly increases with the obstacle velocity $v$ as $f_v=a(v-v_c)$, where $v_c$ is a critical velocity. Based on periodic shedding behavior, we demonstrate deterministic generation of a single vortex dipole by applying a short linear sweep of a laser beam. This method will allow further controlled vortex experiments such as dipole-dipole collisions.
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Woo Jin Kwon, Sang Won Seo, Yong-il Shin. 2015-08-05. Periodic shedding of vortex dipoles from a moving penetrable obstacle in a Bose-Einstein condensate. https://doi.org/10.1103/physreva.92.033613
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