Physical information is fundamentally indestructible under unitary quantum mechanical evolution
The retrieved literature strongly supports the principle that physical information is fundamentally conserved and indestructible under unitary quantum mechanical evolution, even when addressing complex scenarios like the black hole information paradox.
The claim addresses the foundational tenet of quantum mechanics regarding the unitarity of time evolution and the indestructibility of information, which is consistently upheld across the theoretical and experimental papers provided (e.g., papers 0, 1, 4, 5, 8, and 9). No papers refute this fundamental axiom of standard quantum theory.
F. Neukart, R. Brasher, E. Marx. The Quantum Memory Matrix: A Unified Framework for the Black Hole Information Paradox. 2024. https://doi.org/10.3390/e26121039
Paper 0 supports unitarity and information preservation by proposing that space-time acts as a quantum information reservoir to resolve black hole information loss.
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Zurek WH. Quantum Theory of the Classical: Einselection, Envariance, Quantum Darwinism and Extantons.. 2022. https://doi.org/10.3390/e24111520
Paper 1 emphasizes the foundational role of unitarity in quantum mechanics and how objective reality and information emerge from the quantum substrate.
Hrvoje Nikolić. Semiclassical solution of black hole information paradox. 2024. https://doi.org/10.1088/1361-6382/ad7a4b
Paper 4 resolves the black hole information paradox within semiclassical gravity by showing that Hawking radiation is entangled with degrees of freedom closer to the horizon, preserving unitarity.
Huo B, Qu D, Lin Q, Zhu G, Xiao L, Zhan X, Xue P. Experimental revival of an unknown state from the past in quantum walks.. 2025. https://doi.org/10.1093/nsr/nwae263
Paper 5 demonstrates that the evolution of a quantum system is fundamentally reversible, confirming the conservation and recovery of quantum states.
Cooper E. Modular Entropy Retrieval in Black-Hole Information Recovery: A Proper-Time Saturation Model. 2026. https://doi.org/10.20944/preprints202503.2057.v11
Paper 8 discusses exact quantum transfer channels and proper-time retrieval models that confirm information conservation and recovery in black hole dynamics.
Antiba CA. Finite-Capacity Thermodynamics of Causal Horizons.. 2026. https://doi.org/10.3390/e28050557
Paper 9 states that fundamental physics and underlying unitary dynamics remain unchanged even when local classical representations are limited by horizon capacity.
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