For quasi-2D dipolar Bose condensates, an in-plane polarization component turns the perpendicular-polarization critical point into three critical lines and makes the hexagonal and honeycomb supersolids axially deformed with anisotropic superfluid response.
Metastable Patterns in one- and two-component dipolar Bose-Einstein Condensates
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abstract
In this paper we study metastable states in single- and two-component dipolar Bose-Einstein condensates. We show that this system supports a rich spectrum of symmetries that are remarkably stable despite not being ground states. In a parameter region where striped phases are ground states, we find such metastable states that are energetically favourable compared to triangular and honeycomb lattices. Among these metastable states we report a peculiar ring-lattice state, which is led by the competition between triangular and honeycomb symmetries and rarely seen in other systems. In the case of dipolar mixtures we show that via tuning the miscibility these states can be stabilized in a broader domain by utilising inter-species interactions.
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Supersolid dipolar phases in planar geometry: effects of tilted polarization
For quasi-2D dipolar Bose condensates, an in-plane polarization component turns the perpendicular-polarization critical point into three critical lines and makes the hexagonal and honeycomb supersolids axially deformed with anisotropic superfluid response.