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Interacting Topological Superconductors and possible Origin of $16n$ Chiral Fermions in the Standard Model
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abstract
Motivated by the observation that the Standard Model of particle physics (plus a right-handed neutrino) has precisely 16 Weyl fermions per generation, we search for $(3+1)$-dimensional chiral fermionic theories and chiral gauge theories that can be regularized on a 3 dimensional spatial lattice when and only when the number of flavors is an integral multiple of 16. All these results are based on the observation that local interactions reduce the classification of certain $(4+1)$-dimensional topological superconductors from $\mathbb{Z}$ to $\mathbb{Z}_{8}$, which means that one of their $(3+1)$-dimensional boundaries can be gapped out by interactions without breaking any symmetry when and only when the number of boundary chiral fermions is an integral multiple of $16$.
Forward citations
Cited by 2 Pith papers
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A Perturbative Approach to Symmetric Mass Generation
A perturbative epsilon-expansion identifies a candidate fixed point with a single relevant direction that is conjectured to describe the universal critical behavior of symmetric mass generation transitions.
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A Guide to Symmetric Mass Generation in Lattice-QCD
Staggered fermion actions meet the criteria for symmetric mass generation in lattice QCD, with Goldstone tetraquark states as a signature of the type-II phase.
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