Unnecessary quantum criticality in $SU (3)$ kagome magnets
Yunchao Zhang, Xue-Yang Song, T. Senthil
Massachusetts Institute of Technology Hong Kong University of Science and Technology
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摘要与影响
Algebraic/Dirac spin liquids (DSLs) are a class of critical quantum ground states that do not have a quasi-particle description. DSLs and related spin liquid phases often arise in strongly frustrated quantum spin systems, in which strong correlations and quantum fluctuations among constituent spins persist down to zero temperature. In this work, we analyze Mott insulating phases of SU(3) S U ( 3 ) fermions on a kagome lattice which may realize a DSL phase, described at low energies by (2 + 1)d ( 2 + 1 ) d quantum electrodynamics (QED _3 3 ) with N_f=6 N f = 6 Dirac fermions. By analyzing the action of physical symmetries on the operators of the QED _3 3 theory, we conclude that the low energy DSL is a quantum critical point that can be accessed by tuning a single microscopic parameter. Aided by the emergent symmetry and anomalies of the low energy effective theory, we conjecture and present supporting arguments that the SU(3) S U ( 3 ) Kagome magnet DSL is an unnecessary quantum critical point, lying completely within a single phase.
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物理Advanced Condensed Matter Physics
Topological Materials and Phenomena · Organic and Molecular Conductors Research
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