Probing the inverse moment of -meson distribution amplitude via form factors
arXiv:2402.16737 · doi:10.1007/JHEP06(2024)212 10.1007/JHEP06(2024)212 10.1007/JHEP06(2024)212 10.1007/JHEP06(2024)212
Abstract
We investigate the inverse moment of the -meson light-cone distribution amplitude (LCDA), denoted as and defined within the heavy quark effective theory, through the calculation of form factors. The presence of the -quark inside the -meson dictates a notable departure of approximately in the value compared to the non-strange case , as computed within the QCD sum rule approach, albeit with significant uncertainty. First, we compute the decay constant of the -meson utilizing two-point sum rules while retaining finite -quark mass contributions. Next, we constrain the parameter by calculating form factors within the light-cone sum rule approach, using -meson LCDAs, and leveraging Lattice QCD estimates at zero momentum transfer from the HPQCD collaboration. Our findings yield = 480 92 MeV when expressing the -meson LCDAs in the Exponential model, consistent with previous QCD sum rule estimate yet exhibiting a 1.5-fold improvement in uncertainty. Furthermore, we compare the form factor predictions, based on the extracted value, with earlier analyses for other channels such as and .
Version accepted for publication in JHEP
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