The Higgs-physical and number theoretical arguments for the necessity of a triple elementary particle in super symmetric spacetime
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Publication:1766580
DOI10.1016/j.chaos.2004.04.026zbMath1063.83579OpenAlexW2125481137MaRDI QIDQ1766580
Publication date: 8 March 2005
Published in: Chaos, Solitons and Fractals (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.chaos.2004.04.026
String and superstring theories in gravitational theory (83E30) Equations of motion in general relativity and gravitational theory (83C10)
Related Items (16)
From experimental quantum optics to quantum gravity via a fuzzy Kähler manifold ⋮ Supersymmetry, transfinite neural networks, hyperbolic manifolds, quantum gravity and the Higgs ⋮ The Higgs and the expectation value of the number of elementary particles in a supersymmetric extensions of the standard model of high energy physics ⋮ A note on various supersymmetric extensions of the standard model of high-energy particles and E-infinity theory ⋮ Determining the number of Higgs particles starting from general relativity and various other field theories ⋮ A P-Brane vindication of the two Higgs-doublet minimally super-symmetric standard model and related issues ⋮ On Einstein's super symmetric tensor and the number of elementary particles of the standard model ⋮ Light cone quantization, heterotic strings and E-infinity derivation of the number of Higgs bosons ⋮ Supergravity and the number of fundamental particles in the standard model ⋮ Tadpoles, anomaly cancellation and the expectation value of the number of the Higgs particles in the standard model ⋮ Einstein's dream and fractal geometry ⋮ Experimental and theoretical arguments for the number and the mass of the Higgs particles ⋮ On the possibility of six gravity related particles in the standard model of high energy physics ⋮ Deriving the essential features of the standard model from the general theory of relativity ⋮ Elementary particle mass, subquark model and \(E\)-infinity theory ⋮ Transition to a pair of chaotic symmetric flows
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