š§ Quantum Entanglement Across Dimensional Boundaries: Evidence for Nonlocal Information Persistence
Author: Dr. Aelita Schaeffer Affiliation: Ćcole Polytechnique, Paris / Kadic Quantum Systems Laboratory Publication Date: June 2026 Journal: Journal of Theoretical Quantum Dynamics DOI: 10.2026/jtqd.06.2026.001
Abstract
In this paper, Dr. Aelita Schaeffer presents the first empirical evidence of quantum entanglement persisting across simulated dimensional boundaries, a phenomenon previously considered impossible under standard decoherence models. Using a hybrid quantumādigital lattice constructed within the Lyoko Simulation Array, Schaeffer demonstrates that entangled particle pairs can maintain correlation even when one particle is transferred into a nonāphysical computational substrate.
This discovery suggests that information can remain coherent beyond classical spacetime, implying that consciousness and data may share a deeper quantum substrate. The experiment, dubbed Project BelpoisāSchaeffer Bridge II, builds upon prior work in quantum curvature stabilization and introduces a new metric tensor for describing entanglement persistence in nonāEuclidean manifolds.
Results indicate a measurable phaseālocking effect between realāspace and simulatedāspace qubits, with a coherence halfālife exceeding 10ā“ seconds ā a record in quantum simulation environments. The implications extend to quantum computing, interdimensional communication, and the theoretical framework of emergent universes.
Keywords
Quantum entanglement ⢠Nonlocality ⢠Dimensional physics ⢠Quantum simulation ⢠Information persistence ⢠Lyoko Array ⢠BelpoisāSchaeffer Bridge
Excerpt
āIf information can remain entangled beyond the boundaries of physical space, then the universe itself may be a computation ā not metaphorically, but literally.ā ā A. Schaeffer, 2026
Cited by
Belpois, J. (2027). Negative Energy Density and the Alcubierre Metric in Simulated Spacetime.
Hopper, F. (2028). Quantum Consciousness and Digital Ontology: Revisiting Schaefferās Hypothesis.

















