Pseudo-Conformal Field Theory
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arXiv
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| Format: | Preprint |
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2017
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| _version_ | 1866914683704836096 |
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| author | Ragiadakos, C. N. |
| author_facet | Ragiadakos, C. N. |
| contents | The fundamental structure of the 4-dimensional spacetime is assumed to be the lorentzian CR-structure (LCR-structure), which contains two correlated 3-dimensional CR-structures. It is defined by explicit Frobenius integrable relations characterized by "left" and "right" CP(3) points. This LCR-structure is invariant under a very restrictive tetrad-Weyl symmetry, which permits a unique special second order partial differential equation applied to a Yang-Mills field, identified with the gluon field. A class of metrics with the corresponding self-dual forms are defined. After partially fixing the tetrad-Weyl symmetry, the electroweak connection is also defined, which is directly related with the class of LCR-tetrads of the structure. The "free electron" LCR-structure is identified, which has gravitational and electroweak potentials (dressings) with fermionic gyromagnetic ratio g=2. The corresponding massless "neutrino" LCR-structure is also found. These two solitonic configurations constitute the first leptonic generation identified with the Petrov type D LCR-structure. The muon and tau leptonic generations are identified with the Petrov type II and I respectively. Using the electron LCR-structure, I compute the corresponding quark having an additional gluonic potential and providing the explication of the lepton-quark correspondence. The standard model is implied via the causal Bogoliubov, Epstein-Glaser and Scharf procedure viewed as a targeted harmonic analysis in the rigged Hilbert-Fock space of precise Poincare representations of the computed geometric structures. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_1704_00321 |
| institution | arXiv |
| publishDate | 2017 |
| record_format | arxiv |
| spellingShingle | Pseudo-Conformal Field Theory Ragiadakos, C. N. High Energy Physics - Theory General Relativity and Quantum Cosmology Mathematical Physics The fundamental structure of the 4-dimensional spacetime is assumed to be the lorentzian CR-structure (LCR-structure), which contains two correlated 3-dimensional CR-structures. It is defined by explicit Frobenius integrable relations characterized by "left" and "right" CP(3) points. This LCR-structure is invariant under a very restrictive tetrad-Weyl symmetry, which permits a unique special second order partial differential equation applied to a Yang-Mills field, identified with the gluon field. A class of metrics with the corresponding self-dual forms are defined. After partially fixing the tetrad-Weyl symmetry, the electroweak connection is also defined, which is directly related with the class of LCR-tetrads of the structure. The "free electron" LCR-structure is identified, which has gravitational and electroweak potentials (dressings) with fermionic gyromagnetic ratio g=2. The corresponding massless "neutrino" LCR-structure is also found. These two solitonic configurations constitute the first leptonic generation identified with the Petrov type D LCR-structure. The muon and tau leptonic generations are identified with the Petrov type II and I respectively. Using the electron LCR-structure, I compute the corresponding quark having an additional gluonic potential and providing the explication of the lepton-quark correspondence. The standard model is implied via the causal Bogoliubov, Epstein-Glaser and Scharf procedure viewed as a targeted harmonic analysis in the rigged Hilbert-Fock space of precise Poincare representations of the computed geometric structures. |
| title | Pseudo-Conformal Field Theory |
| topic | High Energy Physics - Theory General Relativity and Quantum Cosmology Mathematical Physics |
| url | https://arxiv.org/abs/1704.00321 |