Quantum Spacetime Dynamics (QSD): Complete Paper Series (Papers 1-24) with Reproducible Verification Code

This project presents the complete research series on Quantum Spacetime Dynamics (QSD) by Zhengbo Shi, consisting of 24 peer-review-style papers, a unified terminology glossary, full reproducible Python verification code, and numerical output results. QSD is a first-principles theoretical framework built on three foundational postulates: (1) light particles (S particles) as the fundamental constituent of mass and energy, (2) Compton Temporal Update Frequency (CTUF) as the universal discrete refresh rate of spacetime, and (3) the 3-Radius Envelope (3R) nested structure with golden-spiral orbital geometry. The theory provides unified derivations across thirteen physics domains: the fine-structure constant, Mercury's perihelion precession, the 1/72 collision factor, neutrino mass and neutron star limits, dark matter cosmology, 51 core physical theorems, quantum mechanics, quantum electrodynamics, quantum field theory, electroweak unification, quantum chromodynamics, the Standard Model, and quantum gravity. Papers 14–24 extend the framework to four-force unification, Maxwell's equations, Schrödinger-Navier-Stokes unification, Klein-Gordon-Dirac unification, Yang-Mills theory, thermodynamic time arrow, and Higgs mass origin. Critically, QSD makes quantitative, falsifiable predictions regarding superluminal signal propagation (Paper 19) and its compatibility with Michelson-Morley experimental null results (Paper 20). Rather than asserting superluminality as a dogma, QSD derives specific, experimentally testable parameter ranges and proposes concrete verification protocols, allowing empirical adjudication between QSD and special relativity. These predictions are designed to be accessible to existing or near-term laboratory techniques, inviting experimental falsification as the ultimate criterion for theory selection. All numerical predictions are cross-validated against experimental and observational data, with complete Python code provided for independent reproduction. Keywords: Quantum Spacetime Dynamics, discrete spacetime, light particle, Compton time, golden spiral, 3-Radius Envelope, quantum gravity, dark matter, four-force unification, falsifiable superluminal prediction

Authors

Publication Details

Journal
Open Science Framework
Published
2026-09-30
DOI
https://doi.org/10.17605/osf.io/skwr3
Primary Topic
Biofield Effects and Biophysics
Type
preprint
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Quantum Spacetime Dynamics (QSD): Complete Paper Series (Papers 1-24) with Reproducible Verification Code

Zhenbo Shi
Open Science Framework
Biofield Effects and Biophysics
preprint

Quantum Spacetime Dynamics (QSD): Complete Paper Series (Papers 1-24) with Reproducible Verification Code

Zhenbo Shi
preprint en

Abstract

This project presents the complete research series on Quantum Spacetime Dynamics (QSD) by Zhengbo Shi, consisting of 24 peer-review-style papers, a unified terminology glossary, full reproducible Python verification code, and numerical output results. QSD is a first-principles theoretical framework built on three foundational postulates: (1) light particles (S particles) as the fundamental constituent of mass and energy, (2) Compton Temporal Update Frequency (CTUF) as the universal discrete refresh rate of spacetime, and (3) the 3-Radius Envelope (3R) nested structure with golden-spiral orbital geometry. The theory provides unified derivations across thirteen physics domains: the fine-structure constant, Mercury's perihelion precession, the 1/72 collision factor, neutrino mass and neutron star limits, dark matter cosmology, 51 core physical theorems, quantum mechanics, quantum electrodynamics, quantum field theory, electroweak unification, quantum chromodynamics, the Standard Model, and quantum gravity. Papers 14–24 extend the framework to four-force unification, Maxwell's equations, Schrödinger-Navier-Stokes unification, Klein-Gordon-Dirac unification, Yang-Mills theory, thermodynamic time arrow, and Higgs mass origin. Critically, QSD makes quantitative, falsifiable predictions regarding superluminal signal propagation (Paper 19) and its compatibility with Michelson-Morley experimental null results (Paper 20). Rather than asserting superluminality as a dogma, QSD derives specific, experimentally testable parameter ranges and proposes concrete verification protocols, allowing empirical adjudication between QSD and special relativity. These predictions are designed to be accessible to existing or near-term laboratory techniques, inviting experimental falsification as the ultimate criterion for theory selection. All numerical predictions are cross-validated against experimental and observational data, with complete Python code provided for independent reproduction. Keywords: Quantum Spacetime Dynamics, discrete spacetime, light particle, Compton time, golden spiral, 3-Radius Envelope, quantum gravity, dark matter, four-force unification, falsifiable superluminal prediction

Open Science Framework
Biofield Effects and Biophysics
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Quantum Spacetime Dynamics (QSD): Complete Paper Series (Papers 1-24) with Reproducible Verification Code — Zhenbo Shi · Open Science Framework (2026) | TGRS Research Map | TGRS