Branching fraction and CP asymmetry of the decays $B^+ \to K_{\rm \scriptscriptstyle S}^0 π^+$ and $B^+ \to K_{\rm \scriptscriptstyle S}^0 K^+$
Abstract: An analysis of $B+ \to K_{\rm \scriptscriptstyle S}0 \pi+$ and $B+ \to K_{\rm \scriptscriptstyle S}0 K+$ decays is performed with the LHCb experiment. The $pp$ collision data used correspond to integrated luminosities of $1{\,fb}{-1}$ and $2{\,fb}{-1}$ collected at centre-of-mass energies of $\sqrt{s}=7\mathrm{\,Te\kern -0.1em V}$ and $\sqrt{s}=8\mathrm{\,Te\kern -0.1em V}$, respectively. The ratio of branching fractions and the direct {\it CP} asymmetries are measured to be $\mathcal{B}(B+ \to K_{\rm \scriptscriptstyle S}0 K+)/\mathcal{B}(B+ \to K_{\rm \scriptscriptstyle S}0 \pi+) = 0.064 \pm 0.009\textrm{(stat.)} \pm 0.004\textrm{(syst.)}$, $\mathcal{A}{\it CP}(B+ \to K_{\rm \scriptscriptstyle S}0 \pi+) = -0.022 \pm 0.025\textrm{(stat.)} \pm 0.010\textrm{(syst.)}$ and $\mathcal{A}{\it CP}(B+ \to K_{\rm \scriptscriptstyle S}0 K+) = -0.21 \pm 0.14\textrm{(stat.)} \pm 0.01\textrm{(syst.)}$. The data sample taken at $\sqrt{s}=7\mathrm{\,Te\kern -0.1em V}$ is used to search for $B_c+ \to K_{\rm \scriptscriptstyle S}0 K+$ decays and results in the upper limit $(f_c\cdot\mathcal{B}(B_c+ \to K_{\rm \scriptscriptstyle S}0 K+))/(f_u\cdot\mathcal{B}(B+ \to K_{\rm \scriptscriptstyle S}0 \pi+)) < 5.8\times10{-2}\textrm{at 90% confidence level}$, where $f_c$ and $f_u$ denote the hadronisation fractions of a $\bar{b}$ quark into a $B_c+$ or a $B+$ meson, respectively.
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