Analytic Gravitational Wave Spectrum in Next-to-Minimal Bouncing Cosmology
Abstract
Bouncing cosmology offers a singularity-free alternative to inflation, but its minimal realization-comprising only four cosmic phases-predicts a simple power-law stochastic gravitational-wave background (SGWB) with a narrow observational window. We introduce the next-to-minimal bouncing cosmology (NMBC), which adds an extra early contraction phase that imprints a broken power-law feature in the SGWB spectrum, enhancing detectability. Using our matrix-representation method grounded in an inequality algebra, we derive a closed-form expression for the NMBC SGWB spectrum. From this analytical result, we show that all NMBC models satisfying the current bound automatically avoid the trans-Planckian problem, . These findings establish the NMBC as a self-consistent, self-contained framework capable of generating a potentially detectable SGWB in both astrophysical and laboratory searches, and demonstrate the broad utility of our matrix-representation method for future SGWB analyses in multi-phase cosmologies.
Cite
@article{arxiv.2507.12968,
title = {Analytic Gravitational Wave Spectrum in Next-to-Minimal Bouncing Cosmology},
author = {Changhong Li},
journal= {arXiv preprint arXiv:2507.12968},
year = {2025}
}
Comments
10 pages, 3 figures