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March 21, 20260 citationsOpen Access

Bogoliubov Coefficients, Correlated Hawking Radiation, and the Page Curve in the CCEGA Framework: The Echo Delay as the Carrier of Quantum Information

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LMLópez Sánchez Marc

Key Points

  • This research aims to compute Bogoliubov coefficients to explore quantum information in black holes within the CCEGA framework.
  • Computed Bogoliubov coefficients for a massless scalar field in a regulated black hole background.
  • Imposed Dirichlet boundary conditions for Regge-Wheeler modes at r=0.
  • Analyzed off-diagonal Bogoliubov coefficients associated with Hawking radiation.
  • Introduced off-diagonal Bogoliubov coefficients that encode correlations in emitted Hawking quanta.
  • Determined correlation rate as Γ_corr = 1/τ_echo, significantly smaller than the thermal emission rate.
  • Established a link between gravitational-wave echo delay and quantum information from the Hawking spectrum.

Abstract

We compute the Bogoliubov coefficients for a massless scalar field in the regular black hole background of the Curvature-Controlled Extra-Dimensional Gravity and Emergent Unification (CCEGA) framework. The regular core at r=0 imposes a Dirichlet boundary condition u (0) =0 for all Regge-Wheeler modes, producing perfect reflection and introducing off-diagonal Bogoliubov coefficients Δβ_ωω' that are absent in the Schwarzschild case. These off-diagonal terms encode correlations between Hawking quanta emitted at times separated by the echo delay τₑcho, providing an explicit geometric mechanism for information release. The correlation rate is Γcorr = 1/τₑcho ≈ 6×10⁻⁶ c³/GM, a factor ~10⁻⁴ smaller than the thermal emission rate. The Page time occurs at tPage ≈ 0. 02 tₑvap, identical numerically to Schwarzschild, but the mechanism of information release differs fundamentally: in CCEGA it is explicit and geometric, mediated by correlated pairs of Hawking quanta separated by exactly τₑcho. This establishes a direct connection between the classically observable gravitational-wave echo delay and the quantum information content of the Hawking spectrum, unifying the observational and theoretical sectors of the CCEGA programme.

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Cite This Study

López Sánchez Marc (2026) studied this question.

synapsesocial.com/papers/69be35a96e48c4981c6741b3https://doi.org/10.5281/zenodo.19103768
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