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arXiv:1901.03251·v2·High Energy Physics — Theory

Unification of Flavor, CP, and Modular Symmetries

Alexander Baur🇩🇪 · Hans Peter Nilles🇩🇪 · Andreas Trautner🇩🇪 · Patrick K.S. Vaudrevange🇩🇪

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Abstract

Flavor symmetry plays a crucial role in the standard model of particle physics but its origin is still unknown. We develop a new method (based on outer automorphisms of the Narain space group) to determine flavor symmetries within compactified string theory. A picture emerges where traditional (discrete) flavor symmetries, CP-like symmetries and modular symmetries (like T-duality) of string theory combine to unified flavor symmetries. The groups depend on the geometry of compact space and the geographical location of fields in the extra dimensions. We observe a phenomenon of "local flavor groups" with potentially different flavor symmetries for the various sectors of quarks and leptons. This should allow interesting connections to existing bottom-up attempts in flavor model building.

Comments: 18 pages, 3 figures; v2: minor changes, version accepted by PLB

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