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Light-cone Sum Rule Analysis of Semileptonic Decays Λ_b⁰ to Λ_c^+ ell^- overline{ν}_ell

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arxiv 2204.00409 v3 pith:JSEMWMZG submitted 2022-04-01 hep-ph hep-ex

Light-cone Sum Rule Analysis of Semileptonic Decays $\Lambda_b^0 \to \Lambda_c^+ \ell^- \overline{\nu}_\ell$

classification hep-ph hep-ex
keywords lambdaoverlinelight-coneobtainedruledecayelementfactors
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

In this work, we analyze the semileptonic decay processes of $\Lambda_b \to \Lambda_c$ in the light-cone sum rule approach. In order to calculate the form factors of the $\Lambda_b$ baryon transition matrix element, we use the light-cone distribution amplitudes of $\Lambda_b$ obtained from the QCD sum rule in the heavy quark effective field theory framework. With the calculation of the six form factors of the $\Lambda_b \to \Lambda_c$ transition matrix element, the differential decay widths of $\Lambda_b^0 \to \Lambda_c^+ \ell^- \overline{\nu}_\ell (\ell = e, ~\mu, ~\tau)$ and their absolute branching fractions are obtained. Additionally, the ratio of $R(\Lambda_c^+) \equiv \mathcal{B}r(\Lambda_b^0 \to \Lambda_c^+ \tau^- \overline{\nu}_\tau)/\mathcal{B}r(\Lambda_b^0 \to \Lambda_c^+ \mu^- \overline{\nu}_\mu)$ is also obtained in this work. Our results are in accord with the newest experimental result and other theoretical calculations and predictions.

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Cited by 3 Pith papers

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  1. Are Subleading Effects Really Subleading? $B$-Meson Decays in Mesogenesis

    hep-ph 2025-11 conditional novelty 6.0

    In B-Mesogenesis, formally subleading heavy-quark-expansion corrections to inclusive B decays exceed the leading free-quark decay for dark-fermion masses above about 2–3 GeV, limiting the reliable range of HQE-based c...

  2. Investigation of $\Lambda_{b}\to \Lambda_{c} \ell^-\overline\nu_\ell$ Decays in Perturbative QCD Approach

    hep-ph 2025-09 conditional novelty 6.0

    A leading-order pQCD calculation of all six Lambda_b to Lambda_c form factors, z-expanded and anchored to a lattice QCD point, predicts R_Lambda_c = 0.29+0.12-0.11, slightly above LHCb.

  3. Analysis of the semileptonic decays $\Lambda_b\to\Lambda_cl\bar{\nu}_l$ and $\Xi_b\to\Xi_cl\bar{\nu}_l$ in QCD sum rules

    hep-ph 2025-08 conditional novelty 5.0

    A QCD sum rule analysis that includes negative parity baryon states and condensates up to dimension 8 obtains Lambda_b semileptonic branching ratios near 8 percent and predicts Xi_b rates near 14 percent.