论文标题

用$ \ mathbb {z} _3 $拓扑顺序在rydberg arom阵列中

Trimer states with $\mathbb{Z}_3$ topological order in Rydberg atom arrays

论文作者

Giudice, Giacomo, Surace, Federica Maria, Pichler, Hannes, Giudici, Giuliano

论文摘要

三线被定义为图上的两个相邻边缘。我们研究了晶格所有三聚体覆盖物的同等权重叠加的量子状态,其限制是在每个顶点上都有一个三聚体:所谓的三聚体共鸣 - 价值键(TRVB)状态。利用其张量网络表示形式,我们表明这些状态可以托管$ \ mathbb {z} _3 $拓扑顺序,也可以使用$ \ mathrm {u}(1)\ times \ times \ times \ times \ times \ athrm {u}(1)$ local Symertry。我们证明,每当晶格可以是三方时,​​这种连续的对称性就会出现,以使每个三聚体覆盖所有三个sublattices。在这种情况下,我们证明了拓扑顺序与最大三聚体覆盖物稀释的稳定性,这与逼真的模型相关,其中三聚体的密度可能会波动。此外,我们通过将前者与$ \ Mathbb {Z} _3 $ toric代码平稳连接,并讨论TRVB州顶部的非局限性激励,从而阐明了Gapped TRVB状态与$ \ Mathbb {Z} _3 $晶格量规理论之间的连接。最后,我们通过精确的对角度分析平方晶格上稀释的三聚体模型的零温度相图,并证明基态在参数空间的狭窄区域中表现出拓扑特性。我们表明,可以在利用封锁效果的Rydberg Atom阵列中实现类似的模型。我们研究了此设置中的动态制备方案,并提供了可行的途径,以实验$ \ mathbb {z} _3 $量子旋转液体。

Trimers are defined as two adjacent edges on a graph. We study the quantum states obtained as equal-weight superpositions of all trimer coverings of a lattice, with the constraint of having a trimer on each vertex: the so-called trimer resonating-valence-bond (tRVB) states. Exploiting their tensor network representation, we show that these states can host $\mathbb{Z}_3$ topological order or can be gapless liquids with $\mathrm{U}(1) \times \mathrm{U}(1)$ local symmetry. We prove that this continuous symmetry emerges whenever the lattice can be tripartite such that each trimer covers all the three sublattices. In the gapped case, we demonstrate the stability of topological order against dilution of maximal trimer coverings, which is relevant for realistic models where the density of trimers can fluctuate. Furthermore, we clarify the connection between gapped tRVB states and $\mathbb{Z}_3$ lattice gauge theories by smoothly connecting the former to the $\mathbb{Z}_3$ toric code, and discuss the non-local excitations on top of tRVB states. Finally, we analyze via exact diagonalization the zero-temperature phase diagram of a diluted trimer model on the square lattice and demonstrate that the ground state exhibits topological properties in a narrow region in parameter space. We show that a similar model can be implemented in Rydberg atom arrays exploiting the blockade effect. We investigate dynamical preparation schemes in this setup and provide a viable route for probing experimentally $\mathbb{Z}_3$ quantum spin liquids.

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