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April 23, 20260 citationsOpen Access

A Deterministic-Stochastic Framework for Quantum Trajectories in 11 Dimensions

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NPNarendra Pant

Key Points

  • To create a framework that presents a Theory of Everything based on underlying physical processes in eleven dimensions.
  • Developed a deterministic-stochastic model based on an eleven-dimensional configuration space.
  • Integrated a global clock with local stochastic processes to predict physical phenomena.
  • Analyzed predictions regarding time shifts in clocks, black-hole echoes, and gravitational wave backgrounds.
  • Predicted a 0.01–0.03% frequency shift between bosonic and fermionic clocks.
  • Estimated a 10⁻⁴–10⁻³ phase lag in black-hole ringdown echoes.
  • Forecasted a gravitational wave stochastic background at Ω_GW h² ∼ 10⁻¹³.

Abstract

A falsifiable Theory of Everything is presented in which physical law is not assumed but arises as the macroscopic manifestation of a deeper constraint-satisfaction process operating within an eleven-dimensional configuration space. The framework unites a global, deterministic clock that advances the universe in discrete ticks of Planck time with a local, stochastic resolution engine that settles every event to a definite bit. Spacetime, gauge symmetries, and particle content emerge from the eigenstructure of a single Ledger operator; gauge and gravitational anomalies cancel by construction. The model yields quantitative, near-term predictions: a 0. 01–0. 03% frequency shift between bosonic and fermionic timing offsets in optical-lattice clocks, a 10⁻⁴–10⁻³ phase lag in horizon-scale black-hole ringdown echoes, and an all-sky, frequency-independent GW stochastic background at ΩGW h² ∼ 10⁻¹³. A public code and benchmark

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Cite This Study

Narendra Pant (2026) studied this question.

synapsesocial.com/papers/69e9b89b85696592c86ebb34https://doi.org/10.5281/zenodo.19681347
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