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Model independent determination of the CKM phase γ using input from D 0 D ˉ 0 $$ {D}^0hbox{-} {overline{D}}^0 $$ mixing

机译:模型独立测定CKM相γ使用输入从 < msup> d 0 - d < mo stractry =“true”>ˉ 0 $$ {d} ^ 0 hbox { - } { overline {d}} ^ 0 $$ 混合

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A bstract We present a new, amplitude model-independent method to measure the CP violation parameter γ in B _(?)→ DK _(?)and related decays. Information on charm interference parameters, usually obtained from charm threshold data, is obtained from charm mixing. By splitting the phase space of the D meson decay into several bins, enough information can be gained to measure γ without input from the charm threshold. We demonstrate the feasibility of this approach with a simulation study of B _(?)→ DK _(?)with D → K _(+) π _(?) π _(+) π _(?). We compare the performance of our novel approach to that of a previously proposed binned analysis which uses charm interference parameters obtained from threshold data. While both methods provide useful constraints, the combination of the two by far outperforms either of them applied on their own. Such an analysis would provide a highly competitive measurement of γ . Our simulation studies indicate, subject to assumptions about data yields and the amplitude structure of D _(0)→ K _(+) π _(?) π _(+) π _(?), a statistical uncertainty on γ of ~ 12° with existing data and ~ 4° for the LHCb-upgrade.
机译:Bstract我们呈现了一种新的,幅度模型的独立方法,用于测量B _(?)→DK _(?)和相关衰变中的CP违规参数γ。有关脉冲干扰参数的信息,通常从Charm阈值数据获得,从Charm混合中获得。通过将D MESON衰减的相位分成几个区间,可以获得足够的信息来测量γ而不从脉冲阈值输入的输入。我们通过D→K _(+)π_(+)π_(+)π_(+)π_(+)π_(+)π_(+)π_(+)π_(+)π(+)Π(+)π_(α)对B _(α)→dk_(α)的模拟研究表明了这种方法的可行性。我们比较我们的新方法对先前提出的Binned分析的性能,该分析使用从阈值数据获得的魅力干扰参数。虽然两种方法提供有用的限制,但两者的组合到迄今为止他们自己的任何一个。这种分析将提供γ的竞争力的测量。我们的仿真研究表明,受关于数据产量的假设和D _(0)→K _(+)π_(α)π_(+)π_(α)的幅度结构,γ的统计不确定性使用现有数据12°和LHCB升级的〜4°。

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