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Bound State Description of Particles from a Quantum Field Theory of Fermions and Bosons, Compatible with Relativity

DOI: 10.4236/jhepgc.2024.102035, PP. 562-573

Keywords: Quantum Field Theory of Fermion and Boson Fields, Hadrons and Leptons Described as Bound States of Relativistic Fermions and Bosons, Leading to a Total Energy Equal to Zero

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Abstract:

Both, the dilemma to find a quantum field theory consistent with Einstein’s law of relativity and the problem to describe existing particles as bound states of matter has been solved by calculating bound state matrix elements from a dual fermion-boson Lagrangian. In this formalism, the fermion binding energies are compensated by boson energies, indicating that particles can be generated out of the vacuum. This yields quantitative solutions for various mesons ω (0.78 GeV) - Υ (9.46 GeV) and all leptons e, μ and τ, with uncertainties in the extracted properties of less than 1‰. For transparency, a Web-page with the address htpps://h2909473.stratoserver.net has been constructed, where all calculations can be run on line and also the underlying fortran source code can be inspected.

References

[1]  Aitchison, I.J.R. and Hey, A.J.G. (1982) Gauge Theories in Particle Physics. Adam Hilger Ltd., Bristol.
[2]  Peskin, M.E. and Schroeder, D.V. (1995) An Introduction to Quantum Field Theory. Addison-Wesley Publ. Comp., Boston.
[3]  Nakamura, K. and Particle Data Group (2010) Review of Particle Physics. Journal of Physics G: Nuclear and Particle Physics, 37, Article 075021.
http://pdg.lbl.gov
https://doi.org/10.1088/0954-3899/37/7A/075021
[4]  Schwinger, J. (1948) On Quantum-Electrodynamics and the Magnetic Moment of the Electron. Physical Review Journals Archive, 73, 416.
https://doi.org/10.1103/PhysRev.73.416
[5]  Simon, J.Z. (1990) Higher-Derivative Lagrangians, Nonlocality, Problems and Solutions. Physical Review D, 41, 3720.
https://doi.org/10.1103/PhysRevD.41.3720
[6]  Foussats, A., et al. (1995) Quantum Methods in Field Theories with Singular Higher Derivative Lagrangians. International Journal of Theoretical Physics, 34, 1-17.
https://doi.org/10.1007/BF00670982
[7]  Nesterenko, V.V. (1989) Singular Lagrangians with Higher Derivatives. Journal of Physics A: Mathematical and General, 22, 1673.
https://doi.org/10.1088/0305-4470/22/10/021
[8]  Harmanni, F. (2016) Higher Order Lagrangians for Classical Mechanics and Scalar Fields. Bachelor Research Report, University of Groningen, Groningen.
[9]  Morsch, H.P. (2018) Acceleration in a Fundamental Bound State Theory and the Fate of Gravitational Systems. Journal of Advances in Mathematics and Computer Science, 28, 1-13.
https://doi.org/10.9734/JAMCS/2018/42590
[10]  Lucha, W. and Schöberl, F.F. (1989) Die starke Wechselwirkung. BI-Wissens-chaftsverlag Mannheim.
[11]  Gromes, D. (1982) Bethe-Salpeter Equation with Confining Kernel; Correct Non-Relativistic Limit and the Constant to Be Added to the Linear Potential. Zeitschrift für Physik C Particles and Fields, 14, 94.
https://doi.org/10.1007/BF01547968
[12]  Morsch, H.P. (2021) Lepton Bound State Theory Based on First Principles. Journal of Advances in Mathematics and Computer Science, 36, 118-131.
https://doi.org/10.9734/jamcs/2021/v36i330350
[13]  Barbieri, R., Kögerler, R., Kunszt, Z. and Gatto, R. (1976) Bethe-Salpeter Equations for and qqq Systems in the Instantaneous Approximation. Nuclear Physics B, 105, 125.
[14]  Eichten, E., Gottfried, K., Kinoshita, T., Lane, K.D. and Yan, T.M. (1978) Charmonium: The Model. Physical Review D, 17, 3090.
[15]  Godfrey, S. and Isgur, N. (1985) Mesons in a Relativized Quark Model with Chromodynamics. Physical Review D, 32, 189.
[16]  Ebert, D., Faustov, R.N. and Galkin, V.O. (2003) Properties of Heavy Quarkonia and Bc Mesons in the Relativistic Quark Model. Physical Review D, 67, Article 014027.
[17]  Morsch, H.P. (2023) Fingerprint of Genesis in the Structure of Particles. Acta Scientific Computer Sciences, 4, 20.
[18]  Morsch, H.P. (2023) Logic of Nature Seen in Particle Properties, in the Rise of the Universe and Consequences for the Structure of Complex Systems. Journal of Artificial Intelligence & Cloud Computing, 2, 1-3.
https://doi.org/10.47363/JAICC/2023(2)113

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