Stringy Constraints on Modular Flavor Models

Fuente: arXiv
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Main Authors: Ishiguro, Keiya, Kai, Takafumi, Kobayashi, Tatsuo, Otsuka, Hajime
Format: Preprint
Published: 2025
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author Ishiguro, Keiya
Kai, Takafumi
Kobayashi, Tatsuo
Otsuka, Hajime
author_facet Ishiguro, Keiya
Kai, Takafumi
Kobayashi, Tatsuo
Otsuka, Hajime
contents We investigate stringy constraints on moduli spaces in modular flavor models by analyzing moduli-dependent threshold corrections in heterotic string vacua. While moduli play a crucial role in determining the flavor structure of fermions predicted by modular flavor models, the parameter space in which their vacuum expectation values are allowed has not been fully explored. In this work, within the framework of perturbative heterotic string theory on toroidal orbifolds, we derive constraints on the moduli space and study their systematic behavior. We characterize the stringy constraints in terms of the dilaton, the beta-function coefficients, and the ratio between a complex-structure modulus and a Kähler modulus. It is found that the large value of the modulus controlling the flavor structure, i.e., $τ\simeq i \infty$, lies in the Swampland, and the self-dual point $τ=i$ is also disfavored in the large volume regime of toroidal backgrounds. In addition, we discuss the phenomenological implications of these stringy constraints.
format Preprint
id arxiv_https___arxiv_org_abs_2508_12392
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Stringy Constraints on Modular Flavor Models
Ishiguro, Keiya
Kai, Takafumi
Kobayashi, Tatsuo
Otsuka, Hajime
High Energy Physics - Phenomenology
High Energy Physics - Theory
We investigate stringy constraints on moduli spaces in modular flavor models by analyzing moduli-dependent threshold corrections in heterotic string vacua. While moduli play a crucial role in determining the flavor structure of fermions predicted by modular flavor models, the parameter space in which their vacuum expectation values are allowed has not been fully explored. In this work, within the framework of perturbative heterotic string theory on toroidal orbifolds, we derive constraints on the moduli space and study their systematic behavior. We characterize the stringy constraints in terms of the dilaton, the beta-function coefficients, and the ratio between a complex-structure modulus and a Kähler modulus. It is found that the large value of the modulus controlling the flavor structure, i.e., $τ\simeq i \infty$, lies in the Swampland, and the self-dual point $τ=i$ is also disfavored in the large volume regime of toroidal backgrounds. In addition, we discuss the phenomenological implications of these stringy constraints.
title Stringy Constraints on Modular Flavor Models
topic High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2508.12392