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Strong decays of $P-$wave doubly charmed and bottom baryons
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abstract
In this work, we investigate the strong decays for $P-$wave excited states of doubly charmed and bottom baryons in the constituent quark model. Our results indicate that some $\lambda-$mode $\Xi_{cc/bb}(1P)$ and $\Omega_{cc/bb}(1P)$ states are relatively narrow, which are very likely to be discovered by future experiments. The light meson emissions for the low-lying $\rho-$mode states are highly suppressed due to the orthogonality of wave functions between initial and final states. Moreover, the strong decay behaviors for doubly charmed and bottom baryons preserve the heavy superflavor symmetry well, where the small violation originates from the finite heavy quark masses and different phase spaces. We hope that present theoretical results for undiscovered doubly charmed and bottom baryons can provide helpful information for future experiments and help us to better understand the heavy quark symmetry.
Forward citations
Cited by 2 Pith papers
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Understanding the low-lying $\Omega_c$ structures from a coupled-channel perspective
A coupled-channel analysis assigns Omega_c(3000) and Omega_c(3050) specific spin-parities and predicts a narrow bound state Omega_c(2954) just below the Xi_c Kbar threshold.
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The nonleptonic decays $\Xi_{cc}^{++}\to\Xi_{c}^{(\prime)+}\pi^{+}$ within the nonrelativistic quark model
Fitting the Xi_c-Xi_c' mixing angle to the LHCb ratio R=1.41, the author predicts branching fractions (3.2-6.0)% and asymmetry parameters about -0.6 to -0.8 for Xi_cc++ -> Xi_c(')+ pi+, using Schrodinger-equation bary...
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