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Critical behavior and ultraviolet scaling of induced gravitational waves from an early matter-dominated era

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arxiv 2504.01397 v3 pith:5BSNEQPH submitted 2025-04-02 gr-qc astro-ph.CO

Critical behavior and ultraviolet scaling of induced gravitational waves from an early matter-dominated era

classification gr-qc astro-ph.CO
keywords omegacriticalbehaviorscalingultravioletearlygravitationalinduced
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Critical behavior and ultraviolet scaling of induced gravitational waves (GWs) from an early matter-dominated (eMD) era are studied in the context of primordial black hole evaporation. The depth of the eMD is characterized by the minimum parameter of the equation of state $\omega_{\min}$ that the Universe can attain during this phase. We identify a critical value $\omega_{c}\sim 7.3\times10^{-3}$ that separates two regimes. For $\omega_{\min}<\omega_{c}$, the GW peak lies at the non-linear cut-off point and requires non-linear dynamics. For $\omega_{\min}>\omega_{c}$, the peak originates from modes that reenter near the matter-radiation equality, and the ultraviolet tail follows a distinct scaling $k^{-3/2}$. This critical behavior provides a clear definition of deep versus shallow eMD and a robust spectral signature for future GW observations.

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Cited by 2 Pith papers

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  1. Scalar-induced gravitational waves with non-Gaussianity up to all orders

    astro-ph.CO 2025-08 unverdicted novelty 7.0

    Lattice simulations directly calculate SIGW spectra with non-Gaussianity to all orders and show that modest non-Gaussianity alters ultraviolet spectral behavior.

  2. Signatures of loop quantum gravity in primordial black hole cosmologies

    gr-qc 2026-05 unverdicted novelty 5.0

    PBH masses near 10^3 kg allow Hawking evaporation to reheat the universe while Planckian remnants comprise all present-day DM without fine-tuning initial abundance, yielding testable GW signals.