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Doubly Charmful Baryonic B Decays

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arxiv hep-ph/0512335 v2 pith:IMWPI4CG submitted 2005-12-27 hep-ph hep-ex

classification hep-phhep-ex
keywords lambdacharmfuldecaydecaysdoublypairbaryonicbranching
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

There are two apparent puzzles connected with the two-body and three-body doubly charmed baryonic B decays. First, earlier calculations based on QCD sum rules or the diquark model predict $Br(\bar B^0\to\Xi_c^+\bar\Lambda_c^-)\approx Br(\bar B^0\to\B_c\bar N)$, while experimentally the former has a rate two orders of magnitude larger than the latter. Second, a naive estimate of the branching ratio $10^{-9}$ for the color-suppressed three-body decay $\bar B\to\Lambda_c^+\bar\Lambda_c^-K$, which is highly suppressed by phase space, is too small by five to six orders of magnitude compared to experiment. We show that the great suppression for the $\Lambda_c^+\bar\Lambda_c^-K$ production can be alleviated provided that there exists a narrow hidden charm bound state with a mass near the $\Lambda_c\bar\Lambda_c$ threshold. This new state that couples strongly to the charmed baryon pair can be searched for in B decays and in $p\bar p$ collisions by studying the mass spectrum of $D^{(*)}\bar D^{(*)}$ or $\Lambda_c\bar\Lambda_c$. The doubly charmful decay $\bar B\to\Xi_c\bar\Lambda_c$ has a configuration more favorable than the singly charmful one such as $\bar B^0\to\Lambda_c\bar p$ since no hard gluon is needed to produce the energetic $\Xi_c\bar\Lambda_c$ pair in the former decay, while two hard gluons are needed for the latter process. Assuming that a soft $q\bar q$ quark pair is produced through the $\sigma$ and $\pi$ meson exchanges in the configuration for $\bar B\to \Xi_c\bar\Lambda_c$, it is found that its branching ratio is of order $10^{-3}$, in agreement with experiment.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Revisiting $\bar B^0 \rightarrow \Lambda_c^+ \bar p$ decay with higher twist corrections

    hep-ph 2026-07 accept novelty 6.0 of 10

    Higher-twist LCDAs plus W-exchange produce destructive interference that lowers the PQCD branching fraction of B-bar0 to Lambda_c+ p-bar to ~1.6e-5, matching experiment, while predicting the suppressed mode at order 10^{-8}.

  2. Two-body charmed anti-charmed baryonic $B$ decays

    hep-ph 2026-04 unverdicted novelty 4.0 of 10

    Topological decomposition of amplitudes for B to charmed baryon anti-baryon decays yields predictions for several channels after fitting 35% SU(3) breaking effects to existing data, with large cancellations noted in s...

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