Induced gravitational waves for arbitrary higher orders: vertex rules and loop diagrams in cosmological perturbation theory
Abstract
Gravitational waves induced by primordial perturbations serve as crucial probes for studying the early universe, providing a significant window into potential new physics during cosmic evolution. Due to the potentially large amplitudes of primordial perturbations on small scales, the contributions of high-order cosmological perturbations are highly significant. We propose a vertex approach applicable to the study of induced gravitational waves for arbitrary higher orders. Using the vertex approach and tree diagrams, we can directly derive the explicit expressions of higher-order induced gravitational waves without involving the complex and lengthy calculations of higher-order cosmological perturbations. Correlations between different tree diagrams correspond to the loop diagrams of two-point correlation functions of induced gravitational waves. Our investigation reveals that one-particle reducible diagrams impact tensor-scalar induced gravitational waves while leaving scalar induced gravitational waves unaffected.
Keywords
Cite
@article{arxiv.2408.14052,
title = {Induced gravitational waves for arbitrary higher orders: vertex rules and loop diagrams in cosmological perturbation theory},
author = {Jing-Zhi Zhou and Yu-Ting Kuang and Di Wu and H. Lü and Zhe Chang},
journal= {arXiv preprint arXiv:2408.14052},
year = {2025}
}
Comments
Accepted for publication in PRD on 2025 March 22