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Families as Neighbors in Extra Dimension

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arxiv hep-ph/0001072 v1 pith:GXXIBBF7 submitted 2000-01-10 hep-ph

Families as Neighbors in Extra Dimension

classification hep-ph
keywords branesexponentiallyextrafermionbreakingdifferentdimensionfamilies
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We propose a new mechanism for explanation of the fermion hierarchy without introducing any family symmetries. Instead, we postulate that different generations live on different branes embedded in a relatively large extra dimension, where the gauge fields can propagate. The electroweak symmetry is broken on a separate brane, which is a source of exponentially decaying Higgs profile in the bulk. The resulting fermion masses and mixings are determined by an exponentially suppressed overlap of the fermion and Higgs wave functions and are automatically hierarchical even if all copies are identical and there is no hierarchy of distances. In this framework the well known pattern of the "nearest neighbor mixing" is predicted due to the fact that the families are literally neighbors in the extra space. This picture may also provide a new way of a hierarchically weak supersymmetry breaking, provided that the combination of three family branes is a non-BPS configuration, although each of them, individually taken, is. This results in exponentially weak supersymmetry breaking. We also discuss the issue of embedding identical branes in the compact spaces and localization of the fermionic zero modes.

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Forward citations

Cited by 3 Pith papers

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  1. Cosmological History of Flavour Deconstruction Models: Constraints from Monopole Production

    hep-ph 2026-05 unverdicted novelty 5.0

    Flavour deconstruction models with semi-simple gauge groups generically produce light monopoles that require low-scale reheating after inflation to satisfy cosmological and astrophysical bounds.

  2. Vacuum structure of a scalar field on a torus with uniform magnetic flux

    hep-th 2026-04 unverdicted novelty 5.0

    Above a critical area, a complex scalar on a torus with flux M develops a non-zero coordinate-dependent vacuum expectation value, yielding 1, 2, or 6 degenerate configurations for M=1,2,3 in the lowest-mode approximation.

  3. String geometry phenomenology

    hep-th 2025-11 reject novelty 4.0

    Minimizing a potential from string geometry theory in a simple heterotic model relates the compactification scale to flux quanta and gives Mc ≤ 6.7×10^16 GeV for three generations.