4.7 Article

Is the Λc(2625)+ the heavy quark spin symmetry partner of the Λc(2595)+ ?

期刊

PHYSICAL REVIEW D
卷 106, 期 11, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.106.114020

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资金

  1. Spanish Ministerio de Ciencia e Innovacion (MICINN) [PID2020 - 112777GB-I00, PID2019 - 105439GB-C22]
  2. European Regional Development Fund (ERDF) [PID2020 - 112777GB-I00, PID2019 - 105439GB-C22]
  3. EU STRONG -2020 project [H2020-INFRAIA-2018-1, 824093]
  4. Generalitat Valenciana [PROMETEO/2020/023]

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This study uses a heavy quark effective theory scheme to investigate the matrix elements between Lambda(b) and Lambda(c) resonances. The results show that the scheme can reasonably describe the experimental data and provide support for the possibility of the resonances forming a heavy quark spin symmetry doublet. However, the accuracy of the lattice QCD description of these resonances needs further improvement to determine the effects of threshold positions and to confirm if they are HQSS partners. Additionally, the study also provides an explanation for the large deviations from the predicted values in the semileptonic decay widths near zero recoil.
We use a O(alpha(s). Lambda(QCD)/m(c)) heavy quark effective theory scheme, where only O(Lambda(QCD)/mb) corrections are neglected, to study the matrix elements of the scalar, pseudoscalar, vector, axial-vector and tensor currents between the Lambda(b) ground state and the odd parity charm Lambda(c)(2595)(+) and Lambda(c)(2625)(+) resonances. We show that in the near-zero recoil regime, the scheme describes reasonably well, taking into account uncertainties, the results for the 24 form factors obtained in lattice QCD (LQCD) just in terms of only four Isgur-Wise (IW) functions. We also find some support for the possibility that the Lambda(c)(2595)(+) and Lambda(c)(2625)(+) resonances might form a heavy quark spin symmetry (HQSS) doublet. However, we argue that the available LQCD description of these two resonances is not accurate enough to disentangle the possible effects of the Sigma(c)pi and Sigma(c)*pi thresholds, located only a few MeV above their position, and that it cannot be ruled out that these states are not HQSS partners. Finally, we study the ratio d Gamma/[Lambda(b) -> Lambda(c,1/2)-*l (v) over bar (l)]/dq(2)/d Gamma/[Lambda(b) -> Lambda(c,3/2)-*l (v) over bar (l)]/dq(2) of the Standard Model differential semileptonic decay widths, with q the four-momentum transferred between the initial and final hadrons. We provide a natural explanation for the existence of large deviations, near the zero recoil, of this ratio from 1=2 (value predicted in the infinite heavy quark mass limit, assuming that the Lambda(c,1/2)- and Lambda(c,3/2)- are the two members of a HQSS doublet) based on S-wave contributions to the Lambda(b) -> Lambda(c,1/2)- decay amplitude driven by a subleading IW function.

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