Superfluid-quasicrystal in a Bose-Einstein condensate
ORAL
Abstract
Quasicrystal is a class of ordered structures defying conventional classification of solid crystals and may carry classically forbidden (e.g., 5-fold) rotational symmetries. In view of long-sought supersolids, a natural question is whether a superfluid can spontaneously form quasicrystalline order that is not possessed by the underlying Hamiltonian, forming ``superfluid-quasicrystals". Here we show that a superfluid-quasicrystal stripe state with the minimal 5-fold rotational symmetry can be realized as the ground state of a Bose-Einstein condensate within a practical experimental scheme. There exists a rich phase diagram consisting of various superfluid-quasicrystal, supersolid, and plane-wave phases. Our scheme can be generalized for generating other higher-order (e.g., 7-fold) quasicrystal states, and provides a platform for investigating such new exotic quantum matter.
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Presenters
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Junpeng Hou
The University of Texas at Dallas, Physics Department, The University of Texas at Dallas
Authors
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Junpeng Hou
The University of Texas at Dallas, Physics Department, The University of Texas at Dallas
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Haiping Hu
The University of Texas at Dallas, Physics Department, The University of Texas at Dallas
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Kuei Sun
The University of Texas at Dallas
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Chuanwei Zhang
The University of Texas at Dallas, Physics Department, The University of Texas at Dallas