Gravitational Waves as a Source of Large-Scale White Noise: New Constraints

arXiv:2607.27338 · astro-ph.CO, gr-qc, hep-ph · Submitted 2026-07-29 · Read on arXiv

Gabriela Barenboim, Albert Stebbins

astro-ph.CO, gr-qc, hep-ph

Submitted: 2026-07-29

Comments: 16 pages 2 figures

License: http://creativecommons.org/licenses/by-nc-sa/4.0/

The gist: A stochastic gravitational wave (GW) background sources a shear in the flow of cosmic fluid which, through non-linear mode coupling, generates large-scale white noise (LSWN) in the kurvature density

Terminology

Abstract

A stochastic gravitational wave (GW) background sources a shear in the flow of cosmic fluid which, through non-linear mode coupling, generates large-scale white noise (LSWN) in the kurvature density field. Building on the LSWN framework of our previous work, we derive the amplitude of this GW-induced LSWN and translate the observational non-detection of LSWN into bounds on the production redshift and density of gravity waves. In particular, a minimal constraint on gravity waves with z=0 density parameter GW0* in frequency band f* generated at redshift z* must satisfy z* squared, GW0*<5 times10 7,(f*/nHz) 3/2. This, for example, precludes the gravity waves recently detected by pulsar timing arrays from being present before z* about10 8, long after the quark hadron phase transition. While orders of magnitude stronger than other constraints on gravity waves, this is a minimal LSWN constraint as realistic modeling of early universe gravity wave production, including the granularity of the gravity-wave sources and the LSWN produced by the associated acoustic waves would probably tighten this constraint by orders of magnitude.

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