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Monte?Carlo Study of Lattice Compact Quantum Electrodynamics with Fermionic Matter: The Parent State of Quantum Phases

机译:Monte?Carlo与Fermionic物质的晶格紧凑型量子电动力学研究:量子阶段的父级

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The interplay between lattice gauge theories and fermionic matter accounts for fundamental physical phenomena ranging from the deconfinement of quarks in particle physics to quantum spin liquid with fractionalized anyons and emergent gauge structures in condensed matter physics. However, except for certain limits (for instance, a large number of flavors of matter fields), analytical methods can provide few concrete results. Here we show that the problem of compact U ( 1 ) lattice gauge theory coupled to fermionic matter in ( 2 + 1 ) D is possible to access via sign-problem-free quantum Monte?Carlo simulations. One can hence map out the phase diagram as a function of fermion flavors and the strength of gauge fluctuations. By increasing the coupling constant of the gauge field, gauge confinement in the form of various spontaneous-symmetry-breaking phases such as the valence-bond solid (VBS) and Néel antiferromagnet emerge. Deconfined phases with algebraic spin and VBS correlation functions are also observed. Such deconfined phases are incarnations of exotic states of matter, i.e., the algebraic spin liquid, which is generally viewed as the parent state of various quantum phases. The phase transitions between the deconfined and confined phases, as well as that between the different confined phases provide various manifestations of deconfined quantum criticality. In particular, for four flavors N f = 4 , our data suggest a continuous quantum phase transition between the VBS and Néel order. We also provide preliminary theoretical analysis for these quantum phase transitions.
机译:格子仪表理论和Fermionic物质之间的相互作用占从粒子物理痕迹的痕迹到量子旋转液体的基本物理现象,以及缩合物理学中的伸缩性痘痘和紧急仪表结构。但是,除了一定的限制(例如,大量的物质领域),分析方法可以提供一些混凝土结果。在这里,我们表明,在(2 + 1)D中耦合到Fermionic物质的紧凑U(1)晶格表理论的问题是可以通过无问题的量子蒙特·克罗斯仿真进行访问。因此,可以将相位图映射为FERMION口味的函数和测量仪波动的强度。通过增加规格域的耦合常数,以诸如价粘合固体(VBS)和Néelantifermagnet的各种自发对称阶段的形式的仪表限制。还观察到具有代数旋转和VBS相关函数的折扣相。这种粘合阶段是物质的异种状态的化量,即代数旋转液体,其通常被视为各种量子相的母体状态。折叠和狭窄阶段之间的相变,以及不同狭窄阶段之间的相位转变提供了欺骗量子临界性的各种表现形式。特别是,对于四种口味N f = 4,我们的数据表明VBS和Néel订单之间的连续量子相变。我们还为这些量子阶段过渡提供了初步理论分析。

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