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Quantum Decoherence: Coherence Diffusion into a Noise Black Hole

Deepinder Sidhu · University of Maryland, Baltimore County · 2026

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Quantum Information ScienceQuantum EngineeringCSA Research

Abstract

Quantum decoherence is traditionally modeled through empirical decay laws in which observable coherence decreases with time. While these models successfully describe the dynamics of open quantum systems, they do not by themselves explain the physical destination of the apparently lost coherence. Motivated by the Structured Quantum Noise (SQN) framework, which models noise as a structured quantum subsystem rather than a scalar attenuation parameter, this paper proposes an information-theoretic interpretation of decoherence as coherence redistribution into environmental degrees of freedom. We introduce the concept of a Noise Black Hole, a hierarchical environmental structure through which coherence and entanglement diffuse into progressively less accessible sectors while remaining globally conserved. A minimal coherence-retention model shows that the familiar exponential decoherence law emerges naturally from repeated information redistribution rather than being imposed phenomenologically. The framework further predicts that deviations from ideal exponential decay arise from differences in environmental structure, memory, coupling, and backflow pathways, suggesting that measured decoherence curves may provide indirect probes of otherwise inaccessible environmental Hilbert-space dynamics. Rather than modifying conventional open-system theory, the proposed framework provides a possible information-theoretic explanation for the observed form of decoherence while generating experimentally testable predictions.

Research Context

This paper is part of CSA's quantum research program connecting quantum metrology, structured environmental noise, decoherence, quantum communication, and operationally relevant quantum-system engineering.

Citation

@misc{sidhu2026coherencediffusionnoiseblackhole,
  author = {Deepinder Sidhu},
  title = {Quantum Decoherence: Coherence Diffusion into a Noise Black Hole},
  year = {2026},
  note = {CyberSpace Analytics Quantum Research Series}
}

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