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Vortices in dipolar Bose-Einstein condensates
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Quantized vortices are the hallmark of superfluidity, and are often sought out as the first observable feature in new superfluid systems. Following the recent experimental observation of vortices in Bose-Einstein condensates comprised of atoms with inherent long-range dipole-dipole interactions [Nat. Phys. 18, 1453-1458 (2022)], we thoroughly investigate vortex properties in the three-dimensional dominantly dipolar regime, where beyond-mean-field effects are crucial for stability, and investigate the interplay between trap geometry and magnetic field tilt angle.
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Dipolar optimal control of entangled current states
Dipolar quantum optimal control via time-dependent magnetic-field orientation prepares entangled current states in ring lattices, with fidelities matching symmetry-imposed upper bounds.
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