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量子畴壁在各向异性三角形晶格上诱导出非公度超固相。

Quantum Domain Walls Induce Incommensurate Supersolid Phase on the Anisotropic Triangular Lattice.

作者信息

Zhang Xue-Feng, Hu Shijie, Pelster Axel, Eggert Sebastian

机构信息

Physics Department and Research Center OPTIMAS, University of Kaiserslautern, 67663 Kaiserslautern, Germany.

Max-Planck-Institute for the Physics of Complex Systems, 01187 Dresden, Germany.

出版信息

Phys Rev Lett. 2016 Nov 4;117(19):193201. doi: 10.1103/PhysRevLett.117.193201. Epub 2016 Nov 3.

Abstract

We investigate the extended hard-core Bose-Hubbard model on the triangular lattice as a function of spatial anisotropy with respect to both hopping and nearest-neighbor interaction strength. At half-filling the system can be tuned from decoupled one-dimensional chains to a two-dimensional solid phase with alternating density order by adjusting the anisotropic coupling. At intermediate anisotropy, however, frustration effects dominate and an incommensurate supersolid phase emerges, which is characterized by incommensurate density order as well as an anisotropic superfluid density. We demonstrate that this intermediate phase results from the proliferation of topological defects in the form of quantum bosonic domain walls. Accordingly, the structure factor has peaks at wave vectors, which are linearly related to the number of domain walls in a finite system in agreement with extensive quantum Monte Carlo simulations. We discuss possible connections with the supersolid behavior in the high-temperature superconducting striped phase.

摘要

我们研究了三角晶格上的扩展硬核玻色-哈伯德模型,该模型是空间各向异性的函数,涉及跳跃和最近邻相互作用强度。在半填充时,通过调整各向异性耦合,系统可以从解耦的一维链调谐到具有交替密度序的二维固相。然而,在中间各向异性时,阻挫效应占主导,出现了非公度超固相,其特征是具有非公度密度序以及各向异性超流密度。我们证明,这个中间相是由量子玻色子畴壁形式的拓扑缺陷的增殖导致的。因此,结构因子在波矢处有峰值,这些波矢与有限系统中畴壁的数量呈线性关系,这与大量的量子蒙特卡罗模拟结果一致。我们讨论了与高温超导条纹相中超固相行为的可能联系。

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