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May 21, 2026Open Access

A Dissipative Time-Field Completion of Wheeler–DeWitt Dynamics: The Weak Entanglement Symmetry Hypothesis

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Authors

LCLuca Casagrande

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Implication

Randomized trial explores weak entanglement symmetry in quantum dynamics, suggesting a new temporal framework.

Key Points

  • This paper aims to develop the Weak Entanglement Symmetry Hypothesis to address the role of time in quantum dynamics.
  • Formulated the Weak Entanglement Symmetry Hypothesis (WESH) as a dissipative approach.
  • Utilized a finite-range Markov regime and a bilocal difference channel for analysis.
  • Conducted collision-model simulations and quantum-hardware tests for verification of framework signatures.
  • Demonstrated a collective scaling of coherence time under the WESH framework.
  • Identified an angular dependence of the parity-decay rate on the entanglement state.
  • Provided two falsifiable predictions linking WESH to observable quantum phenomena.

Cite This Study

Luca Casagrande (2026) studied this question.

synapsesocial.com/papers/6a0ea16cbe05d6e3efb6014dhttps://doi.org/10.5281/zenodo.20285047
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Quantum Field Theory of Time: The Weak Entanglement Symmetry Hypothesis2026
  2. 2Quantum Field Theory of Time (Extended preprint - January 2026 version)2026
  3. 3From Frozen Constraint to Flow: Revisiting the Wheeler–DeWitt Equation with an Explicit Time Field2025
  4. 4From Frozen Constraint to Flow: Revisiting the Wheeler–DeWitt Equation with an Explicit Time Field2025 · 4 citations
  5. 5Emergent Temporal Asymmetry: Observer-System Entanglement within a Timeless Global Wave Function2026