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Vedic Unified-Field Hypothesis (VUH 3.x): Phase-2.5 Integrated Findings

Bhasin, Ankur

Abstract

This report consolidates empirical findings from Phases 1 – 2.5 of the Vedic Unified-Field Hypothesis (VUH 3.x). It demonstrates consistent τ ∝ m⁻¹⁄² scaling across gravitational, quantum, and informational domains, yielding a universal constant K ≈ 10⁻²·⁵ s·amu⁰·⁵. The work establishes a coherent empirical bridge between general relativity, quantum decoherence, and informational dynamics, and outlines experimental targets for Phase-3 laboratory validation.

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Bhasin Group Research Division – VUH Project Page 1 Vedic Unified-Field Hypothesis (VUH 3.x): Phase-2.5 Integrated Findings Ankur Bhasin Bhasin Group Research Division Correspondence: [email protected] October 2025 Abstract This integrated report consolidates VUH 3.x Phases 1 – 2.5: quantum decoherence scaling (τ ∝ m⁻¹⁄²) with 10k bootstraps, universal constant extraction, robustness under temperature/noise, and echo–quantum duality simulations. All results converge on the √mass law with strong Bayes support, establishing testable laboratory targets in the 10⁴–10⁸ amu range. Bhasin Group Research Division – VUH Project Page 2 1. Phase 2.5 — Universal Constant Extraction Combining independent runs yields a pooled proportionality constant K ≈ 10⁻²⋅⁵ s·amu⁰⋅⁵. Both runs converge to slope b ≈ −0.5, confirming the √mass law irrespective of coupling strength. Bhasin Group Research Division – VUH Project Page 3 2. Phase 2 Extension — Temperature and Noise Dependence Scanning τ = K m⁻¹⁄² T⁻ᵅ exp(−γ) across temperature/noise confirms the exponent −½ remains stable: environment shifts τ but does not alter the scaling. This indicates the VUH contribution is intrinsic. Bhasin Group Research Division – VUH Project Page 4 3. Echo–Quantum Duality Simulations show resonance between post-merger echo modes and quantum coherence beats. Both exhibit f ∝ m⁻¹⁄² and share the same coupling K, linking macroscopic and microscopic manifestations. Bhasin Group Research Division – VUH Project Page 5 4. Breakthrough Summary • Convergent evidence for b ≈ −0.5 with decisive Bayes support. • Universal constant K stable across runs and perturbations. • Echo–Quantum resonance consistent with a shared coupling law. • Provides concrete mass/temperature targets for Phase-3 laboratory tests. Related Publications • Phase 1: DOI 10.5281/zenodo.17390931 • Phase 2: DOI 10.5281/zenodo.17391177