Composite Hybrid Inflation : Primordial Black Holes and Stochastic Gravitational Waves

Fuente: arXiv
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Main Authors: Cacciapaglia, Giacomo, Cheong, Dhong Yeon, Deandrea, Aldo, Isnard, Wanda, Park, Seong Chan, Wang, Xinpeng, Zhang, Ying-li
Format: Preprint
Published: 2025
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author Cacciapaglia, Giacomo
Cheong, Dhong Yeon
Deandrea, Aldo
Isnard, Wanda
Park, Seong Chan
Wang, Xinpeng
Zhang, Ying-li
author_facet Cacciapaglia, Giacomo
Cheong, Dhong Yeon
Deandrea, Aldo
Isnard, Wanda
Park, Seong Chan
Wang, Xinpeng
Zhang, Ying-li
contents We investigate the production of primordial black holes and gravitational waves in composite hybrid inflation. Starting from an effective chiral Lagrangian with a dilaton and pions, we identify inflation occurring due to the walking dynamics of the theory. A $\mathbb{Z}_2$ symmetry-breaking term in the pion sector induces a shift in the inflaton's trajectory, which leads to a tachyonic instability phase. Curvature perturbations grow exponentially, producing copious primordial black holes and a stochastic gravitational wave background. We show that the primordial black hole mass and the gravitational wave frequency are strongly restricted by the anomalous dimensions of the pion operators, with larger anomalous dimensions giving lighter primordial black holes and higher frequency gravitational waves. In both cases, the associated signatures lie within reach of future gravitational wave observatories.
format Preprint
id arxiv_https___arxiv_org_abs_2506_06655
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Composite Hybrid Inflation : Primordial Black Holes and Stochastic Gravitational Waves
Cacciapaglia, Giacomo
Cheong, Dhong Yeon
Deandrea, Aldo
Isnard, Wanda
Park, Seong Chan
Wang, Xinpeng
Zhang, Ying-li
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
We investigate the production of primordial black holes and gravitational waves in composite hybrid inflation. Starting from an effective chiral Lagrangian with a dilaton and pions, we identify inflation occurring due to the walking dynamics of the theory. A $\mathbb{Z}_2$ symmetry-breaking term in the pion sector induces a shift in the inflaton's trajectory, which leads to a tachyonic instability phase. Curvature perturbations grow exponentially, producing copious primordial black holes and a stochastic gravitational wave background. We show that the primordial black hole mass and the gravitational wave frequency are strongly restricted by the anomalous dimensions of the pion operators, with larger anomalous dimensions giving lighter primordial black holes and higher frequency gravitational waves. In both cases, the associated signatures lie within reach of future gravitational wave observatories.
title Composite Hybrid Inflation : Primordial Black Holes and Stochastic Gravitational Waves
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2506.06655