Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
2001-06-17
Phys.Rev. D64 (2001) 057901
Physics
High Energy Physics
High Energy Physics - Phenomenology
11 pages, Latex, 1 eps figure, Final version to appear in Phys.Rev.D
Scientific paper
10.1103/PhysRevD.64.057901
A systematic analysis is presented of the $B_{s}\to K$ form factor $f(q^{2}) $ in the whole range of momentum transfer $q^{2}$, which would be useful to analyzing the future data on $B_{s}\to K$ decays and extracting $| V_{ub}|$. With a modified QCD light cone sum rule (LCSR) approach, in which the contributions cancel out from the twist 3 wavefunctions of $K$ meson, we investigate in detail the behavior of $f(q^{2})$ at small and intermediate $q^{2}$ and the nonperturbative quantity $f_{B^{\ast}}g_{B^{\ast}B_{s}K}$ $(f_{B^{\ast}}$ is the decay constant of $B^{\ast}$ meson and $g_{B^{\ast}B_{s}K}$ the $B^{\ast}B_{s}K$ strong coupling), whose numerical result is used to study $q^{2}$ dependence of $f(q^{2})$ at large $q^{2}$ in the single pole approximation. Based on these findings, a form factor model from the best fit is formulated, which applies to the calculation on $f(q^{2})$ in the whole kinematically accessible range. Also, a comparison is made with the standard LCSR predictions.
Huang Tao
Li Zuo-Hong
Liang Fang-Ying
Wu Xiang-Yao
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