24 research outputs found

    SU(2Nf)O(3)SU(2N_{f})\otimes O(3) light diquark symmetry and current-induced heavy baryon transition form factors

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    We study the current-induced bottom baryon to charm baryon transitions in the Heavy Quark Symmetry limit as mqm_{q}\rightarrow \infty. Our discussion involves ss-wave to ss-wave as well as ss-wave to pp-wave transitions. Using a constituent quark model picture for the light diquark system with an underlying SU(2Nf)O(3)SU(2N_{f})\otimes O(3) symmetry and the heavy quark symmetry we arrive at a number of new predictions for the reduced form factors that describe these transitions.Comment: Corrected spelling mistake in title, 19 pages, latex, no figure

    One-pion transitions between heavy baryons in the constituent quark model

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    Single pion transitions of S wave to S wave, P wave to S wave and P wave to P wave heavy baryons are analyzed in the framework of the Heavy Quark Symmetry limit (HQS). We use a constituent quark model picture for the light diquark system with an underlying SU(2N_{f}) X O(3) symmetry to reduce the number of the HQS coupling factors required to describe these transitions. We also use the quantum theory of angular momentum to rewrite the one-pion transitions constituent quark model results in a more general form using the 6j- and 9j-symbols. We finally estimate the decay rates of some single pion transitions between charm baryon states.Comment: Latex, 33 pages including 2 figures (Postscript). Some typos are corrected with minor changes. Two references were added to the final version which will appear in Phy. Rev.

    Charmed Baryon Strong Coupling Constants in a Light-Front Quark Model

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    Light-Front quark model spin wave functions are employed to calculate the three independent couplings g_{\Sigma_c \Lambda_c \pi}, f_{\Lambda_{c1} \Sigma_c \pi} and f_{\Lambda^{*}_{c1} \Sigma_c \pi} of S-wave to S-wave and P-wave to S-wave one-pion transitions. It is found that g_{\Sigma_c \Lambda_c \pi}=6.81 MeV^{-1}, f_{\Lambda_{c1} \Sigma_c \pi}=1.16 and f_{\Lambda^{*}_{c1} \Sigma_c \pi}=0.96 . 10^{-4} MeV^{-2}. We also predict decay rates for specific strong transitions of charmed baryons.Comment: 21 Pages, No figures, LaTeX, some typos correcte
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