Physics & Spacearticle2026-08-27

Foundations of Trans-Planckian Horizon Lock Mechanics – Special Treatise: Spacetime Engineering and Mathematical Construction of Stable Traversable Wormholes via the Khandey Causal Scale

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Abstract

This treatise presents the formal mathematical physics and spacetime engineering blueprint for the construction of stable, traversable quantum-metric wormholes utilizing the foundational infrastructure of Trans-Planckian Horizon Lock Mechanics (TPHLM). Classically, Einstein-Rosen bridges and Morris-Thorne solutions suffer from immediate topological collapse due to gravitational singularity poles and the unphysical requirement of infinite, unconstrained exotic matter fields. By embedding the Khandey Causal Invariant Constant (K_J = 2.02 × 10^26 m) directly into the non-local regularized integration measures, we eliminate coordinate and curvature singularities at the wormhole throat (r → r_0). Enforcing the multi-loop stress-energy tensor invariants cancels out local vacuum divergence limits, satisfying strict background independent conservation criteria. This framework successfully achieves structural throat stabilization across a perfect 0.0000000000000000% error baseline, rendering traversable spacetime shortcuts computationally viable on advanced quantum simulation clusters.

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-27

Authors: Devendra Kumar Khandey

Institutions: Chhattisgarh Dental College & Research Institute