Reframing the black hole information paradox as a rate–distortion problem, with provable limits on how accurately information can be recovered from Hawking radiation.
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Updated
Apr 4, 2026 - Python
Reframing the black hole information paradox as a rate–distortion problem, with provable limits on how accurately information can be recovered from Hawking radiation.
A physics-based Python simulation of a binary black hole merger using Pygame. Features include orbital inspiral, gravitational waves, Hawking radiation, and an interactive educational commentary dashboard.
Unified Attractor Complexity Model (UACM) A Dual-Framework Cosmology: Indigenous Wisdom and Thermodynamic Integration
La fisica e la matematica alla base dei buchi neri sono avanzate, ma il loro fascino è universale. Il mio obiettivo è renderle accessibili a tutti, percorrendo un viaggio che dall'area dell'orizzonte degli eventi ci porterà fino al principio olografico, attraversando la sorprendente termodinamica dei buchi neri.
DS4 Simulation for Simulon based on the IJSR Paper by Sir Hrishi Mukherjee.
Planck Core Thermodynamics — ITT redefines black hole endstates as cold, stable Planck Cores. Zero temperature at recursive lock.
The D3 Framework: A unified information-geometry approach to black hole thermodynamics. 9 papers deriving exact results connecting Landauer erasure, Bekenstein entropy, and black hole/cosmological horizons across all spins, charges, and dimensions.
An ambitious interactive physics repository exploring quantum tunneling from textbook wave-packet barrier penetration to tunneling time, relativistic Klein tunneling, false-vacuum decay, and Hawking radiation, combining live browser simulation with research-quality Python validation.
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