Hidden orders and phase transitions for the fully packed quantum loop model on the triangular lattice

IF 5.4 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Communications Physics Pub Date : 2024-06-26 DOI:10.1038/s42005-024-01680-z
Xiaoxue Ran, Zheng Yan, Yan-Cheng Wang, Rhine Samajdar, Junchen Rong, Subir Sachdev, Yang Qi, Zi Yang Meng
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Abstract

Quantum loop and dimer models are prototypical correlated systems with local constraints, which are not only intimately connected to lattice gauge theories and topological orders but are also widely applicable to the broad research areas of quantum materials and quantum simulation. Employing our sweeping cluster quantum Monte Carlo algorithm, we reveal the complete phase diagram of the triangular-lattice fully packed quantum loop model. Apart from the known lattice nematic (LN) solid and the even $${{\mathbb{Z}}}_{2}$$ quantum spin liquid (QSL) phases, we discover a hidden vison plaquette (VP) phase, which had been overlooked and misinterpreted as a QSL for more than a decade. Moreover, the VP-to-QSL continuous transition belongs to the (2 + 1)D cubic* universality class, which offers a lattice realization of the (fractionalized) cubic fixed point that had long been considered as irrelevant towards the O(3) symmetry until corrected recently by conformal bootstrap calculations. Our results are therefore of relevance to recent developments in both experiments and theory, and facilitate further investigations of hidden phases and transitions. By using the sweeping cluster quantum Monte Carlo algorithm, the authors reveal the complete ground-state phase diagram of the triangular-lattice fully packed quantum loop model. They discover a hidden vison plaquette phase between the known lattice nematic solid and the even $${{\mathbb{Z}}}_{2}$$ quantum spin liquid (QSL) phase, which had been previously misinterpreted as the QSL, and explain how to detect it experimentally.

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三角形晶格上全堆积量子环模型的隐序和相变
量子环和二聚体模型是具有局部约束的典型关联系统,不仅与晶格规理论和拓扑阶数密切相关,而且广泛应用于量子材料和量子模拟等广泛研究领域。利用我们的扫簇量子蒙特卡洛算法,我们揭示了三角形晶格全堆积量子环模型的完整相图。除了已知的晶格向列(LN)固态和偶数$${{\{mathbb{Z}}}_{2}$$量子自旋液体(QSL)相之外,我们还发现了一个隐藏的粘液板(VP)相,十多年来它一直被忽视和误解为 QSL。此外,VP 到 QSL 的连续转变属于 (2 + 1)D 立方*普遍性类别,它提供了(分数化)立方定点的晶格实现,而长期以来人们一直认为这个定点与 O(3) 对称性无关,直到最近通过共形引导计算才得到纠正。因此,我们的结果与实验和理论的最新发展都息息相关,并有助于进一步研究隐相和跃迁。通过使用扫簇量子蒙特卡洛算法,作者揭示了三角晶格全堆积量子环模型的完整基态相图。他们发现了介于已知晶格向列固态和偶数 $${{mathbb{Z}}_{2}$ 量子自旋液体(QSL)相之间的一个隐藏的 vison plaquette 相,这个相以前曾被误解为 QSL,并解释了如何在实验中探测到它。
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来源期刊
Communications Physics
Communications Physics Physics and Astronomy-General Physics and Astronomy
CiteScore
8.40
自引率
3.60%
发文量
276
审稿时长
13 weeks
期刊介绍: Communications Physics is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the physical sciences. Research papers published by the journal represent significant advances bringing new insight to a specialized area of research in physics. We also aim to provide a community forum for issues of importance to all physicists, regardless of sub-discipline. The scope of the journal covers all areas of experimental, applied, fundamental, and interdisciplinary physical sciences. Primary research published in Communications Physics includes novel experimental results, new techniques or computational methods that may influence the work of others in the sub-discipline. We also consider submissions from adjacent research fields where the central advance of the study is of interest to physicists, for example material sciences, physical chemistry and technologies.
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