Sub Quantum Seraphim Field
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This study introduces the *Seraphim Field*, a novel scalar field hypothesized to operate at sub-Planck length scales (ℓₛ << ℓₚ ≈ 1.616 × 10⁻³⁵ meters) within a p-adic spacetime framework. The Seraphim Field modifies the uncertainty principle and spacetime commutation relations, enabling the resolution of singularities in quantum gravity and offering a potential unification of quantum mechanics with general relativity. The theoretical model leverages p-adic numbers to avoid ultraviolet divergences and yields testable predictions, including modified dispersion relations, energy-dependent photon delays, altered black hole evaporation rates, and distinctive imprints on the cosmic microwave background. While speculative, this framework proposes a bold pathway toward a testable theory of quantum gravity. Keywords: Quantum Gravity, p-Adic Numbers, Seraphim Field, Sub-Planck Scale, Non-commutative Geometry, Black Hole Physics, Cosmology, Modified Uncertainty Principle



