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Qi-Lin Jia

Publications and source records attributed to Qi-Lin Jia.

2 recordsLinked to original sources

Four-body Semileptonic Decays $B\to D^*P\ell^+ν_\ell$ with the SU(3) Flavor Symmetry

We present a complete study of the $B\to D^*P\ell^+ν_\ell~(\ell=e,μ,τ)$ decays with the non-resonant, the charmed axial vector resonant and the charmed tensor resonant contributions by using the SU(3) flavor symmetry. Relevant amplitude relations between different decay modes are obtained by the SU(3) flavor symmetry. We then predict non-measured branching ratios of the $B\to D^*P\ell^+ν_\ell$ decays with the non-resonant and the charmed resonant contributions by using present experimental data of the $B\to D^*P\ell'^+ν_{\ell'}~(\ell'=e,μ)$ decays within $2σ$ errors. We have found that $B^{0,+}\to D^*η\ell^+ν_\ell$, $B^{0,+}\to D^*η'\ell^+ν_\ell$, $B^{0}_s\to D^*_s η\ell^+ν_\ell$, $B^{0}_s\to D^*_sη'\ell^+ν_\ell$ and $B^{0,+}\to D^{*}_sK\ell^+ν_\ell$ decays only receive non-resonant contributions. Decays $B^0_s\to D_s^{*-}π^0\ell^+ν_\ell$ only receive the $D'_{s1}$ resonant contributions. Other decays receive all three kinds of contributions, and three kinds of contributions are important in most of decays.

hep-ph

The single parton fragmentation functions of heavy quarkonium in soft gluon factorization

We study the single parton fragmentation functions (FFs) at the input factorization scale $μ_0\gtrsim 2m_Q$, with heavy quark mass $m_Q$, in the soft gluon factorization (SGF) approach. We express the FFs in terms of perturbatively calculable short distance hard parts for producing a heavy quark-antiquark pair in all possible states, convoluted with corresponding soft gluon distribution for the hadronization of the pair to a heavy quarkonium. We compute the perturbative short distance hard parts for producing a heavy quark pair in all possible $S$-wave and $P$-wave states up to $O(α_s^2)$. With our results, the SGF can be further used to study the heavy quarkonium production at the hadron colliders and heavy quarkonium production within a jet.

hep-ph