Form factors of $\Lambda_b^0 \to \Lambda_c(2595)^+$ within light-cone QCD sum rules
Abstract
In this work, we calculated the form factors of the weak decay process , where the final charm baryon represents an excited state with spin-parity . Utilizing the light-cone QCD sum rules approach, we incorporated the contributions of the lowest two charm baryon states: the ground state with and the excited state with in the hadronic representation of the transition correlation function. This approach allows us to extract the form factors of the from transition. During the light-cone QCD sum rules procedure, we employed the light-cone distribution amplitudes (LCDAs) of the baryon. Furthermore, by combining these form factors with the helicity amplitudes of the bottom baryon transition matrix elements, we calculated the differential decay widths for the processes and provided the optimal choice of the interpolating current for in this process. Additionally, within the lifetime of , we obtained the absolute branching fractions for the semileptonic decays . With the branching fractions of calculated in this work, we also determined the parameter which tests the lepton flavor universality. This parameter is defined as the ratio of branching fractions and . Our results provide a valuable theoretical test for these decay channels and offer insights into the LCDAs of bottom baryons, paving the way for further in-depth investigations.
Cite
@article{arxiv.2406.00353,
title = {Form factors of $\Lambda_b^0 \to \Lambda_c(2595)^+$ within light-cone QCD sum rules},
author = {Hui-Hui Duan and Yong-Lu Liu and Qin Chang and Ming-Qiu Huang},
journal= {arXiv preprint arXiv:2406.00353},
year = {2024}
}
Comments
21 pages, 8 figures and 5 tables