论文标题
Hofstadter-Bose-Hubbard模型中的骨气PFAFFIAN状态
Bosonic Pfaffian State in the Hofstadter-Bose-Hubbard Model
论文作者
论文摘要
物质的拓扑状态,例如分数量子霍尔状态,由于其异国情调的激发而是一个积极的研究领域。特别是,光学晶格中的Ultracold原子提供了一个高度可控制且适应性的平台,用于研究此类新型量子物质。但是,找到一条明确的途径来实现这些系统中的非亚伯量子厅国家,仍然具有挑战性。在这里,我们使用密度 - 马特里克体ren量化组(DMRG)方法来研究填充因子$ν= 1 $的hofstadter-bose-hubbard模型,并发现强烈的迹象表明,$α= 1/6 $磁磁磁通量每个plaquette每个plaquette continue contation toctate of Comintuum nontate continuum nontone nate continuum nonnonononononnonnon date nontate sate conteruum nonononononnonnon-Abelian pffaffian。我们研究基态的现场相关性,该相关性在$ν= 1 $中表明其配对性质,并找到一个不可压缩状态,其特征是散装中的电荷差距。我们认为,薄缸上电荷密度波的出现以及短距离和三粒子相关功能的行为为状态与连续体Pfaffian密切相关提供了证据。在当前的冷原子实验中可以访问这封信中讨论的签名,我们表明,使用绝热制备方案在几种体系中,类似Pfaffian的状态很容易实现。
Topological states of matter, such as fractional quantum Hall states, are an active field of research due to their exotic excitations. In particular, ultracold atoms in optical lattices provide a highly controllable and adaptable platform to study such new types of quantum matter. However, finding a clear route to realize non-Abelian quantum Hall states in these systems remains challenging. Here we use the density-matrix renormalization-group (DMRG) method to study the Hofstadter-Bose-Hubbard model at filling factor $ν= 1$ and find strong indications that at $α=1/6$ magnetic flux quanta per plaquette the ground state is a lattice analog of the continuum non-Abelian Pfaffian. We study the on-site correlations of the ground state, which indicate its paired nature at $ν= 1$, and find an incompressible state characterized by a charge gap in the bulk. We argue that the emergence of a charge density wave on thin cylinders and the behavior of the two- and three-particle correlation functions at short distances provide evidence for the state being closely related to the continuum Pfaffian. The signatures discussed in this letter are accessible in current cold atom experiments and we show that the Pfaffian-like state is readily realizable in few-body systems using adiabatic preparation schemes.