Randomized trial proves the Information Bottleneck Theorem in order parameter spacetime theory, highlighting fundamental insights into quantum mutual information.
This paper rigorously proves the Information Bottleneck Theorem of the order parameter spacetime theory: within the closed-time-path non-equilibrium field theory framework, there exists an exact equivalence relation Γ_I = 0 ⇔ I_irrev = 0 between the total information dissipation coefficient and the irreversible quantum mutual information written into the environment. The proof proceeds in three steps: construction of the generating functional and introduction of the local relaxation tensor (τ⁻¹)AB and decoherence Lagrangian density L_dec; explicit computation of the entropy production rate under the double-Gaussian-state approximation, establishing proportionality with L_dec; and completion of the bidirectional equivalence proof via the fluctuation–dissipation theorem, elevating Postulate 2 to a rigorous theorem. Key insights include the unification of Γ_I and τ⁻¹ as different projections of the same geometric object (τ⁻¹)AB, and natural corollaries pointing to a dark energy density from ground-state entanglement background I_0 and anisotropic decoherence as a probe for spacetime geometric texture. Together with the field-theoretic foundations paper, this work closes the conceptual foundation of the theory by recovering all three core postulates as theorems.
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涛 翟 (2026) studied this question.
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