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Flat bands in topological media

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arxiv 1012.0905 v7 pith:6UR5CKMB submitted 2010-12-04 cond-mat.str-el hep-ph

Flat bands in topological media

classification cond-mat.str-el hep-ph
keywords topologicalflatmediaprotectedbandgaplesssurfacebulk-surface
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Topological media are systems whose properties are protected by topology and thus are robust to deformations of the system. In topological insulators and superconductors the bulk-surface and bulk-vortex correspondence gives rise to the gapless Weyl, Dirac or Majorana fermions on the surface of the system and inside vortex cores. Here we show that in gapless topological media, the bulk-surface and bulk-vortex correspondence is more effective: it produces topologically protected gapless fermions without dispersion -- the flat band. Fermion zero modes forming the flat band are localized on the surface of topological media with protected nodal lines and in the vortex core in systems with topologically protected Fermi points (Weyl points). Flat band has an extremely singular density of states, and we show that this property may give rise in particular to surface superconductivity which could exist even at room temperature.

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