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- W2037346087 abstract "We study topological phases of time-reversal invariant singlet superconductors in three spatial dimensions. In these systems the topological phases are characterized by an even-numbered winding number $ensuremath{nu}$. At the surface the topological properties of this quantum state manifest themselves through the presence of $ensuremath{nu}$ flavors of gapless Dirac fermion surface states, which are robust against localization from random impurities. We construct a lattice tight-binding model that realizes a topologically nontrivial phase, in which $ensuremath{nu}=ifmmodepmelsetextpmfi{}2$. Disorder corresponds to a (nonlocalizing) random SU(2) gauge potential for the surface Dirac fermions, leading to a power-law density of states $ensuremath{rho}(ϵ)ensuremath{sim}{ϵ}^{1/7}$. The bulk effective field theory is proposed to be the ($3+1$)-dimensional SU(2) Yang-Mills theory with a theta term at $ensuremath{theta}=ensuremath{pi}$." @default.
- W2037346087 created "2016-06-24" @default.
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- W2037346087 date "2009-05-15" @default.
- W2037346087 modified "2023-09-23" @default.
- W2037346087 title "Lattice Model of a Three-Dimensional Topological Singlet Superconductor with Time-Reversal Symmetry" @default.
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- W2037346087 doi "https://doi.org/10.1103/physrevlett.102.196804" @default.
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