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arXiv · 1906.08643

Mass spectra in ${\cal N}=1\,\, SQCD$ with additional colorless but flavored fields

Abstract

Considered is the ${\cal N}=1$ SQCD-like theory with $SU(N_c)$ colors and $0< N_F<2N_c$ flavors of equal mass $0< m_Q\llΛ_Q$ quarks. Besides, it includes $N^2_F$ additional colorless but flavored fields $Φ_{i}^{j}$, with the large mass parameter $μ_Φ\ggΛ_Q$. The mass spectra of this $Φ$-theory are first directly calculated at $0<N_F<N_c$ where the quarks are weakly coupled, in all different vacua with the unbroken or spontaneously broken flavor symmetry $U(N_F)\rightarrow U(n_1)\times U(n_2)$. Further, the mass spectra of this direct $Φ$-theory and its Seiberg's dual variant, the $dΦ$-theory, are calculated at $3N_c/2<N_F<2N_c$ and various values of $μ_Φ/Λ_Q\gg 1$ (in strong coupling regimes), using the dynamical scenario introduced by the author in his previous article \cite{ch3}. This scenario assumes that quarks can be in two different standard phases only: either this is the HQ (heavy quark) phase where they are confined, or they are higgsed. Within the used dynamical scenario, it is shown that mass spectra of the direct $Φ$ and dual $dΦ$ - theories are parametrically different. Besides it is shown in the direct $Φ$-theory that a qualitatively new phenomenon takes place: under appropriate conditions, the seemingly heavy and dynamically irrelevant fields $Φ$ 'return back' and there appear two additional generations of light $Φ$-particles with small masses $μ^{\rm pole}(Φ)\llΛ_Q$. Also considered is the $X$-theory which is the ${\cal N}=2$ SQCD with $SU(N_c)$ colors and $0< N_F<2N_c$ flavors of light quarks, broken down to ${\cal N}=1$ by the large mass parameter of the adjoint scalar superfield $X, \, μ_X\ggΛ_2$. The tight interrelations between these $X$ and $Φ$ theories are described, in particular, the conditions under which they are equivalent.

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BibTeXRIS

Victor L. Chernyak. 2019-06-19. Mass spectra in ${\cal N}=1\,\, SQCD$ with additional colorless but flavored fields. https://doi.org/10.1140/epjc%2Fs10052-016-4552-4

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