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A general theory of the standard model and the revelation of the dark side of the universe

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arxiv 2502.19458 v3 pith:5CC26M5Q submitted 2025-02-26 physics.gen-ph

classification physics.gen-ph
keywords gaugedarkforcegravitationalgeneralgravigaugemodelspin
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abstract

A General Theory of the Standard Model (GSM) is built in a spin-related gravigauge spacetime, based on the conformal inhomogeneous spin gauge symmetry WS$_c$(1,3)=SP(1,3)$\rtimes$W$^{1,3}$$\rtimes$SP$_c$(1,1) and the scaling gauge symmetry SG(1), alongside the Standard Model symmetry U$_Y$(1)$\times$SU$_L$(2)$\times$SU(3)$_c$. This framework introduces novel interactions, including spin gauge force, chirality boost-spin force, chiral conformal-spin force, and scaling gauge force. A gravitization equation is derived to describe the gravitational effects arising from the non-commutative derivative operator in gravigauge spacetime. Within the Gravitational Quantum Field Theory (GQFT), the gravitational interaction is mediated by the gravigauge field, identified as the massless graviton. Both gauge-type and geometric-type gravitational equations are established, extending the description of gravidynamics beyond general relativity. A massive chirality boost-spin gauge boson, referred to as the dark graviton, emerges as a dark matter candidate, interacting with leptons and quarks via a spin gauge boson. Additionally, the fundamental scalar fields serve as sources of primordial energy and dark energy, driving early cosmic inflation and the current accelerated expansion of the universe.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Testing the Transverse Scalar Mode of Gravitational Quantum Field Theory with Taiji and LISA

    gr-qc 2026-07 conditional novelty 6.0 of 10

    A null-response channel for LISA/Taiji can isolate GQFT's breathing scalar mode, and orbital motion boosts the low-frequency response by about four orders of magnitude.

  2. Quasi-bound states and late-time evolution of a massive fermion around a Reissner-Nordstr\"{o}m black hole

    gr-qc 2026-07 accept novelty 6.0 of 10

    Matrix matching yields improved quasi-bound spectra (fine structure + decay widths) for a massive Dirac field on RN, and branch-cut analysis plus simulations reveal an intermediate oscillatory power law followed by a ...

  3. Gravitational Wave Generation and Detection in Gravitational Quantum Field Theory

    gr-qc 2025-06 conditional novelty 6.0 of 10

    GQFT's antisymmetric stress tensor sources scalar and vector gravitational waves with 1/gamma_W-enhanced couplings, and vector waves produce no geodesic deviation in laser interferometers.

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