This foundational framework constructs a quantum geometry operator to unify general relativity and the Standard Model, indicating a new direction in theoretical physics.
We establish the complete foundational framework of Unified Scale Geometry, rooted in the quantum-deformed S^3 spacetime manifold and the core Scale Self-Duality Axiom, as the first paper in a 7-part series. This work is a component of the parent monograph The Scale Geometry Framework: Topology, Projection, and Static Universe, available at https://doi.org/10.5281/zenodo.19368089. Starting from a single geometric axiom, we rigorously construct the S^3 quantum deformation geometry operator, the fundamental algebraic and geometric structure that underpins all fundamental interactions in the universe. We derive the full gauge group and chiral fermion content of the Standard Model of particle physics from first principles, naturally explaining the geometric origin of three fermion generations via the Representation Splitting Theorem. We recover the Einstein-Hilbert action of general relativity in the classical limit, unifying the geometric description of gravity with the quantum structure of spacetime, in homage to Albert Einstein's lifelong pursuit of a unified field theory. We eliminate all ultraviolet divergences of quantum field theory via the compact S^1 topology of the scale operator spectrum, laying the mathematical foundation for the renormalization-free quantum field theory. This work establishes the complete axiomatic and mathematical framework for the entire 7-part series, providing a first-principles, parameter-free geometric unification of the Standard Model, general relativity, and quantum mechanics, resolving the core foundational crises of modern theoretical physics. Author: Xinyu Zheng (郑心宇)ORCID: 0009-0000-3175-1681Correspondence: wxsq1638@outlook.comDOI: [To be Assigned by Zenodo]
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