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Zero-modes in magnetized $T^6/\mathbb{Z}_N$ orbifold models through $Sp(6,\mathbb{Z})$ modular symmetry

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arxiv 2305.16709 v1 pith:EYVQ6CCE submitted 2023-05-26 hep-th hep-ph

classification hep-thhep-ph
keywords mathbbmagnetizedzero-modesmodelsmodularnumberorbifoldsanalyses
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abstract

We study of fermion zero-modes on magnetized $T^6/\mathbb{Z}_N$ orbifolds. In particular, we focus on non-factorizable orbifolds, i.e. $T^6/\mathbb{Z}_7$ and $T^6/\mathbb{Z}_{12}$ corresponding to $SU(7)$ and $E_6$ Lie lattices respectively. The number of degenerated zero-modes corresponds to the generation number of low energy effective theory in four dimensional space-time. We find that three-generation models preserving 4D $\mathcal{N}=1$ supersymmetry can be realized by magnetized $T^6/\mathbb{Z}_{12}$, but not by $T^6/\mathbb{Z}_7$. We use $Sp(6,\mathbb{Z})$ modular transformation for the analyses.

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Cited by 1 Pith paper

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  1. Generation structures and Yukawa couplings in magnetized $T^{2g}/\mathbb{Z}_N$ models

    hep-th 2025-07 conditional novelty 5.0 of 10

    The paper constructs zero-mode wave functions for all chiralities on non-factorizable magnetized T^{2g} and uses them to exhibit three-generation spectra in T^{2g}/Z_N orbifold models.

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