Chiral Gapless Spin Liquid in Hyperbolic Space
ORAL
Abstract
Recently, interacting quantum models in hyperbolic space became a subject of interest in theoretical condensed matter physics. In this talk, we analyze the Kitaev model on the {9, 3} hyperbolic lattice. This lattice is formed by a regular 3-coordinated tiling of nonagons, where the 3-color coding of bonds according to the inequivalent Kitaev Ising spin couplings yields the natural generalization of the original Kitaev model for the Euclidean honeycomb tiling. Upon investigation of the bulk spectrum, we identify a gapless chiral spin liquid state featuring spontaneous time-reversal symmetry breaking. Due to its non-commutative translation group structure, such type of hyperbolic spin liquid is conjectured to feature chiral quasiparticles with a potentially non-Abelian Bloch profile.
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Publication: Felix Dusel, Tobias Hofmann, Atanu Maity, Rémy Mosseri, Julien Vidal, Yasir Iqbal, Martin Greiter, and Ronny Thomale. Chiral Gapless Spin Liquid in Hyperbolic Space. arXiv Preprint: arXiv:2407.15705
Presenters
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Tobias Hofmann
Julius-Maximilians University of Wuerzburg
Authors
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Tobias Hofmann
Julius-Maximilians University of Wuerzburg
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Felix Dusel
Julius-Maximilians University of Wuerzburg
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Atanu Maity
Julius-Maximilians University of Wuerzburg
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Rémy Mosseri
Sorbonne Université
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Julien Vidal
Sorbonne Université
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Yasir Iqbal
Indian Institute of Technology, Madras
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Martin Greiter
Julius-Maximilians University of Wuerzburg
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Ronny Thomale
Julius-Maximilians University of Wuerzburg