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具有扩展关联跳跃的空穴超导体中的隐藏弦序

Hidden String Order in a Hole Superconductor with Extended Correlated Hopping.

作者信息

Chhajlany Ravindra W, Grzybowski Przemysław R, Stasińska Julia, Lewenstein Maciej, Dutta Omjyoti

机构信息

ICFO-Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, Av. Carl Friedrich Gauss 3, 08860 Barcelona, Spain.

Faculty of Physics, Adam Mickiewicz University, Umultowska 85, 61-614 Poznań, Poland.

出版信息

Phys Rev Lett. 2016 Jun 3;116(22):225303. doi: 10.1103/PhysRevLett.116.225303. Epub 2016 Jun 2.

Abstract

Ultracold fermions in one-dimensional, spin-dependent nonoverlapping optical lattices are described by a nonstandard Hubbard model with next-nearest-neighbor correlated hopping. In the limit of a kinetically constraining value of the correlated hopping equal to the normal hopping, we map the invariant subspaces of the Hamiltonian exactly to free spinless fermion chains of varying lengths. As a result, the system exactly manifests spin-charge separation and we obtain the system properties for arbitrary filling: ground state collective order characterized by a spin gap, which can be ascribed to an unconventional critical hole superconductor associated with finite long range nonlocal string order. We study the system numerically away from the integrable point and show the persistence of both long range string order and spin gap for appropriate parameters as well as a transition to a ferromagnetic state.

摘要

一维自旋相关非重叠光学晶格中的超冷费米子由具有次近邻关联跳跃的非标准哈伯德模型描述。在关联跳跃的动力学约束值等于正常跳跃的极限情况下,我们将哈密顿量的不变子空间精确映射到不同长度的无自旋费米子自由链。结果,该系统精确地表现出自旋 - 电荷分离,并且我们获得了任意填充情况下的系统性质:以自旋能隙为特征的基态集体序,这可归因于与有限长程非局域弦序相关的非常规临界空穴超导体。我们在远离可积点的情况下对该系统进行数值研究,结果表明对于适当的参数,长程弦序和自旋能隙都持续存在,并且会发生向铁磁态的转变。

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