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April 5, 20260 citationsOpen Access

Quantum Bias of Spacetime

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APAtul Prasad

Key Points

  • The aim is to establish a framework explaining particle physics asymmetries through spacetime geometry.
  • Developed a Quantum Bias of Spacetime framework.
  • Introduced a torsion-mediated micro-interaction channel within Domain Interaction geometry.
  • Derived a universal asymmetry efficiency factor, ε_QBS, and a master accumulation law for asymmetry observation.
  • Identified a geometric bias influencing microscopic interactions.
  • Provided a unifying explanation for baryogenesis and CP-violation.
  • Showed how geometry drives observed particle asymmetries.

Abstract

This paper develops the Quantum Bias of Spacetime (QBS) framework in which microscopic asymmetries in particle physics arise from geometric bias embedded within spacetime structure. The model introduces a torsion-mediated micro-interaction channel, denoted TM, within the Domain Interaction (DI) geometry previously used to describe cosmological structure. A universal per-event asymmetry efficiency factor, εQBS, emerges from this geometry and provides a unified toy explanation for baryogenesis, weak-interaction chirality, and effective CP-violation strength. The paper also develops a master accumulation law in which the observed asymmetry is the product of a geometry-driven microscopic bias and a process-driven effective event count.

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Cite This Study

Atul Prasad (2026) studied this question.

synapsesocial.com/papers/69d1fe18a79560c99a0a49b2https://doi.org/10.5281/zenodo.19327812
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