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Generalized route to effective field theories for quantum systems with local constraints

机译:具有局部约束的量子系统的有效场论的广义路线

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摘要

Some of the exciting phenomena uncovered in strongly correlated systems in recent years-for instance, quantum topological order, deconfined quantum criticality, and emergent gauge symmetries-appear in systems in which the Hilbert space is effectively projected at low energies in a way that imposes local constraints on the original degrees of freedom. Cases in point include spin liquids, valence bond systems, dimer models, and vertex models. In this work, we use a slave boson description coupled to a large-S path integral formulation to devise a generalized route to obtain effective field theories for such systems. We demonstrate the validity and capability of our approach by studying quantum dimer models and by comparing our results with the existing literature. Field-theoretic approaches to date are limited to bipartite lattices, they depend on a gauge-symmetric understanding of the constraint, and they lack generic quantitative predictive power for the coefficients of the terms that appear in the Lagrangians of these systems. Our method overcomes all these shortcomings and we show how the results up to quadratic order compare with the known height description of the square lattice quantum dimer model, as well as with the numerical estimate of the speed of light of the photon excitations on the diamond lattice. Finally, instanton considerations allow us to infer properties of the finite-temperature behavior in two dimensions.
机译:近年来,在强相关的系统中发现了一些令人兴奋的现象,例如量子拓扑顺序,有限的量子临界性和新兴的规范对称性,这些系统出现在希尔伯特空间有效地以低能量投影的系统中。限制了原始的自由度。适当的例子包括自旋液体,价键系统,二聚体模型和顶点模型。在这项工作中,我们将奴隶玻色子描述与大S路径积分公式结合使用,以设计出通用路径来获得此类系统的有效现场理论。我们通过研究量子二聚体模型并将我们的结果与现有文献进行比较,证明了我们方法的有效性和能力。迄今为止,场论方法仅限于二分晶格,它们取决于对约束的量规对称性理解,并且对于这些系统的拉格朗日方程中出现的项的系数缺乏通用的定量预测能力。我们的方法克服了所有这些缺点,并展示了如何将结果与二次方相比与已知的方格量子二聚体模型的高度描述以及钻石晶格上光子激发光速的数值估算进行比较。最后,瞬时考虑因素使我们可以在二维上推断有限温度行为的性质。

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  • 来源
    《Physical review》 |2019年第8期|085113.1-085113.17|共17页
  • 作者单位

    Univ Cambridge TCM Grp Cavendish Lab JJ Thomson Ave Cambridge CB3 0HE England;

    Rutgers State Univ Phys & Astron Dept Piscataway NJ 08854 USA;

    Brookhaven Natl Lab Condensed Matter Phys & Mat Sci Div Upton NY 11973 USA;

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