On a Knot Model of Mesons and Baryons

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A quantum knot model of mesons and baryons is established. This quantum knot model is derived from a quantum gauge model which is similar to the QCD gauge model. We first establish a knot model of the $π$ mesons. We show that the $π$ mesons are modeled by the prime knot ${\bf4_1}$ (which is assigned with the prime number 3). We show that the knot model of the $π^+$ meson gives the strong interaction for the formation of the $π^+$ meson and the weak decay $π^+ \to μ^+ +ν_μ$. We give a mass machanism for the generation of the masses of the $π^0$ meson, $π^+$ meson, the muon $μ^+$ and the muon neutrino $ν_μ$. We then extend the knot model to the basic mesons $K^0, η, ρ, ω, K^*, η^{\prime},$ and $ϕ$. These mesons are modeled by the prime knots ${\bf 6_1, 6_2, 6_3, 6_3, 7_1, 7_2, 7_2}$ respectively where ${\bf 6_1, 6_2, 6_3, 7_1, 7_2}$ are assigned with the prime numbers $11, 13,17, 19, 23$ respectively. We then extend the knot model to the basic baryons $p,n, Λ$, $ Σ, Ξ$; $Δ, Σ^*, Ξ^*$, $Ω^-$ and $Λ^*$. We show that these baryons are modeled by the prime knots ${\bf 6_2, 6_2, 7_1, 7_1,7_1}$; ${\bf7_1, 7_1,7_1, 7_2}$ and $ {\bf7_1}$ respectively where ${\bf 6_2, 7_1, 7_2}$ are assigned with the prime numbers $13, 19, 23$ respectively. This knot model gives a unification of the electromagnetic, the weak and the strong interactions. We show that the existing quark model is as a part of this knot model.
55 pages, 6 figures

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