On an intrinsically local gauge symmetric \(\mathrm {SU}(3)\) field theory for quantum chromodynamics
DOI10.1007/S00006-017-0812-0zbMath1379.81062OpenAlexW2760557432MaRDI QIDQ1686888
Publication date: 18 December 2017
Published in: Advances in Applied Clifford Algebras (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00006-017-0812-0
quantum field theoryYang-Mills theoryquantum chromodynamicsstandard modeloctonionsSU(3) gauge theoryparticle physicsHurwitz algebrasnormed division algebrasstrong forcelocal gauge invariance
Unified quantum theories (81V22) Yang-Mills and other gauge theories in quantum field theory (81T13) Strong interaction, including quantum chromodynamics (81V05) Hurwitz and Lerch zeta functions (11M35) Quaternion and other division algebras: arithmetic, zeta functions (11R52) Nonassociative division algebras (17A35)
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Cites Work
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- Octonion quantum chromodynamics
- Algebras formed by the Zorn vector matrix
- Symmetry and the Standard Model
- Geometry of the Fundamental Interactions
- The Geometry of the Octonions
- Electroweak Interactions
- Vector product algebras
- Noncommutative Matrix Jordan Algebras
- Quark structure and octonions
- The octonions
- General Relativity
- Physics from symmetry
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