Quantum Simulation of a 6 TeV Resonance in the 5D τ-Delay Field Model
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Description
This work presents the first digital quantum simulation of the five-dimensional τ-delay field model, a theoretical framework unifying particle physics and gravity via a dynamical time-delay scalar field in a compact extra dimension.
Using a two-qubit controlled-phase Hamiltonian implemented on IBM’s Qiskit AerSimulator, the study models the interaction between a τ-delay excitation and a delay memory register.
The simulation identifies:
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a sharp resonance at τ* = 0.050 corresponding to a ≈ 6 TeV scalar-like excitation under compactification scale R⁻¹ = 0.6 TeV, and
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undamped coherent oscillations in survival probability at τ = 0.25, revealing a long-lived quasi-stable mode.
These results provide computational validation for the theoretical predictions of high-energy quasi-resonant states arising from 5D delay dynamics. The complete source code and figures are included for reproducibility.
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Quantum_Simulation_of_a_6_TeV_Resonance.pdf
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