Exclusive semileptonic decays of ground-state spin-1/2 doubly charmed baryons
arXiv:1108.1296 · doi:10.1016/j.physletb.2011.09.068
Abstract
We evaluate exclusive semileptonic decays of ground-state spin-1/2 doubly heavy charmed baryons driven by a transition at the quark level. Our results for the form factors are consistent with heavy quark spin symmetry constraints which are valid in the limit of an infinitely massive charm quark and near zero recoil. Only a few exclusive semileptonic decay channels have been theoretically analyzed before. For those cases we find that our results are in a reasonable agreement with previous calculations.
13 latex pages, 3 figures, 2 tables. A new figure added, corrected misprints
References in corpus (6)
- Ground-state triply and doubly heavy baryons in a relativistic three-quark model
- Doubly heavy baryons in a Salpeter model with AdS/QCD inspired potential
- Bethe-Salpeter equation for doubly heavy baryons in the covariant instantaneous approximation
- Lifetime of doubly charmed baryons
- Heavy quark symmetry constraints on semileptonic form factors and decay widths of doubly heavy baryons
- Doubly heavy quark baryon spectroscopy and semileptonic decay
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- Doubly charmed baryon production in heavy ion collisions
- Analysis of the semileptonic and nonleptonic two-body decays of the double heavy charm baryon states and
- Weak decays of mesons
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- Exclusive semileptonic decays of ground-state spin-1/2 and spin-3/2 doubly heavy baryons
- Semileptonic decays of doubly charmed baryons with mixing
- Semileptonic decays of doubly charmed baryons with bag model