Volume Three: Wrapping Dynamics Gravitation's Microscopic Mechanism, Skeleton Formation and Three-Scale Entanglement

This volume constructs the complete dynamics of wrapping, the CSF-CMT theory of mass in full. Its first principle is the canonical formulation of the Yinmeng axiom: mass = the steady expression of wrapping-boundary resistance. Two theses carry the volume. First, gravitation's microscopic mechanism: gravitation is not an independent fundamental force but the macroscopic manifestation of the wrapping-imbalance force; the gravitational constant is a composite quantity G = g_wrap·χ_med/Φ_crit, whose double-smallness decomposes the weakness of gravity into a Yukawa-level factor times a coarse-graining power law; the mass puzzle and the gravity puzzle thereby become two faces of one mechanism, and Mach's principle acquires a derivable closed form—inertia is the steady solution of the universe-total wrapping relation. Second, the dual-wrapping structure with its heaviest corrective proposition: third-space wrapping is the gravitational field's wrapping of the infiltrated body as a whole , not decomposable into a sum of particle wrappings; macroscopic inertia is an emergent whole-level property of the third-space stratum, and the constancy of inertia dm/dΦ = 0 is a definitional consequence of the holistic coupling. The volume then builds the theory of third-space skeleton formation—the four-layer barrier stack as assembly selector, skeletons as stable blocked configurations—and the theory of three-scale entanglement: a unique ontological correlation function of the meta-field medium manifests in three coarse-graining bands (microscopic Bell-type correlation, mesoscopic bonding/order-parameter correlation, macroscopic gravitational correlation χ(r) = −G/r), with total entanglement conserved around the hierarchical cycle. Quantum correlation and gravitation are thus two readouts of one and the same correlation function. Falsifiable interfaces: the interlayer structure of in-medium nucleon mass, and the decoherence ladder-spectrum resonances as the mesoscopic-band probe.Keywordswrapping dynamics; wrapping-imbalance force; composite gravitational coupling; holistic wrapping; skeleton formation; four-layer barrier stack; three-scale entanglement; decoherence ladder spectrum; Mach principle; CSF-CMT

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23028827
Primary Topic
Relativity and Gravitational Theory
Type
preprint
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Volume Three: Wrapping Dynamics Gravitation's Microscopic Mechanism, Skeleton Formation and Three-Scale Entanglement

kimik3,单洁,CSF-CMT Research Group Team Statement CSF-CMT Research Group. Volume Three of the four-volume series The Quark Onset , following Volume One (The Synthesis) and Volume Two (Chromoelectric Dynamics ), and preceding Volume Four (Monopole Dynamics ). This volume develops the third of the three dynamics: wrapping dynamics—spacetime dynamics as the complete theory of mass, spanning the virtual-cloud wrapping of quark cores, the gravitational field's holistic wrapping of infiltrated bodies, s
Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
preprint

Volume Three: Wrapping Dynamics Gravitation's Microscopic Mechanism, Skeleton Formation and Three-Scale Entanglement

kimik3,单洁,CSF-CMT Research Group Team Statement CSF-CMT Research Group. Volume Three of the four-volume series The Quark Onset , following Volume One (The Synthesis) and Volume Two (Chromoelectric Dynamics ), and preceding Volume Four (Monopole Dynamics ). This volume develops the third of the three dynamics: wrapping dynamics—spacetime dynamics as the complete theory of mass, spanning the virtual-cloud wrapping of quark cores, the gravitational field's holistic wrapping of infiltrated bodies, s
preprint en

Abstract

This volume constructs the complete dynamics of wrapping, the CSF-CMT theory of mass in full. Its first principle is the canonical formulation of the Yinmeng axiom: mass = the steady expression of wrapping-boundary resistance. Two theses carry the volume. First, gravitation's microscopic mechanism: gravitation is not an independent fundamental force but the macroscopic manifestation of the wrapping-imbalance force; the gravitational constant is a composite quantity G = g_wrap·χ_med/Φ_crit, whose double-smallness decomposes the weakness of gravity into a Yukawa-level factor times a coarse-graining power law; the mass puzzle and the gravity puzzle thereby become two faces of one mechanism, and Mach's principle acquires a derivable closed form—inertia is the steady solution of the universe-total wrapping relation. Second, the dual-wrapping structure with its heaviest corrective proposition: third-space wrapping is the gravitational field's wrapping of the infiltrated body as a whole , not decomposable into a sum of particle wrappings; macroscopic inertia is an emergent whole-level property of the third-space stratum, and the constancy of inertia dm/dΦ = 0 is a definitional consequence of the holistic coupling. The volume then builds the theory of third-space skeleton formation—the four-layer barrier stack as assembly selector, skeletons as stable blocked configurations—and the theory of three-scale entanglement: a unique ontological correlation function of the meta-field medium manifests in three coarse-graining bands (microscopic Bell-type correlation, mesoscopic bonding/order-parameter correlation, macroscopic gravitational correlation χ(r) = −G/r), with total entanglement conserved around the hierarchical cycle. Quantum correlation and gravitation are thus two readouts of one and the same correlation function. Falsifiable interfaces: the interlayer structure of in-medium nucleon mass, and the decoherence ladder-spectrum resonances as the mesoscopic-band probe.Keywordswrapping dynamics; wrapping-imbalance force; composite gravitational coupling; holistic wrapping; skeleton formation; four-layer barrier stack; three-scale entanglement; decoherence ladder spectrum; Mach principle; CSF-CMT

Zenodo (CERN European Organization for Nuclear Research)
Peace, Justice and strong institutions
Relativity and Gravitational Theory
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