Spinon Band Flattening by Its Emergent Gauge Field in a Quantum Kagome Ice
Anonymous, Roderich Moessner
Gakushuin University Max Planck Institute for the Physics of Complex Systems
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摘要与影响
Fractional excitations provide a key to identifying sought-after topological quantum spin liquid states in realistic materials. Their single-particle dynamics already presents a challenging many-body problem on account of the coupling to their emergent gauge field. Here, we study the spinon excitations of kagome ice, realized at the 2/3 magnetization plateau of spin ice, by combining up-to-63-site exact diagonalization with an analytical state graph mapping. We find a macroscopically degenerate mode in the spinon spectrum. It originates from the destructive interference due to the interaction with surrounding gauge fields, a form of many-body caging. We explicitly construct, and count, the concomitant many-body wave functions. Finally, we discuss the possible role of these flat modes in the magnetization process of kagome antiferromagnets, in particular with regard to the asymmetric termination of the kagome ice magnetization plateau.
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物理Advanced Condensed Matter Physics
Topological Materials and Phenomena · Algebraic structures and combinatorial models
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