Fracton-elasticity duality of two-dimensional superfluid vortex crystals: defect interactions and quantum melting

D. X. Nguyen, A. Gromov, S. Moroz
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引用次数: 38

Abstract

Employing the fracton-elastic duality, we develop a low-energy effective theory of a zero-temperature vortex crystal in a two-dimensional bosonic superfluid which naturally incorporates crystalline topological defects. We extract static interactions between these defects and investigate several continuous quantum transitions triggered by the Higgs condensation of vortex vacancies/interstitials and dislocations. We propose that the quantum melting of the vortex crystal towards the hexatic or smectic phase may occur via a pair of continuous transitions separated by an intermediate vortex supersolid phase.
二维超流涡旋晶体的分数-弹性二象性:缺陷相互作用和量子熔化
利用分数-弹性二象性,我们建立了二维玻色子超流体中含有晶体拓扑缺陷的零温度涡旋晶体的低能有效理论。我们提取了这些缺陷之间的静态相互作用,并研究了由涡旋空位/间隙和位错的希格斯凝聚引发的几个连续量子跃迁。我们提出涡旋晶体向六相或近晶相的量子熔化可能是通过中间涡旋超固相分开的一对连续转变发生的。
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