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Hyperbolic Band Theory under Magnetic Field and Dirac Cones on a Higher Genus Surface

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arxiv 2104.13314 v4 pith:BMI72DEN submitted 2021-04-27 cond-mat.mes-hall hep-thmath-phmath.AGmath.MPquant-ph

classification cond-mat.mes-hallhep-thmath-phmath.AGmath.MPquant-ph
keywords bandhyperbolictheorymagneticdiracsurfaceconesfield
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We explore the hyperbolic band theory under a magnetic field for the first time. Our theory is a general extension of the conventional band theory defined on a Euclidean lattice into the band theory on a general hyperbolic lattice/Riemann surface. Our methods and results can be confirmed experimentally by circuit quantum electrodynamics (cQED), which enables us to create novel materials in a hyperbolic space. To investigate the band structures, we construct directly the hyperbolic magnetic Bloch states and find that they form Dirac cones on a coordinate neighborhood, by which they can be regarded as a global quantum gravity solution detectable in a laboratory. Besides this is the first explicit example of a massless Dirac state on a higher genus surface. Moreover we show that the energy spectrum exhibits an unusual fractal structure refracting the negative curvature, when plotted as a function of a magnetic flux.

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