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A novel determination of the $B_c$ lifetime

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arxiv 2108.10285 v2 pith:4HGEMJDY submitted 2021-08-23 hep-ph hep-exhep-lat

classification hep-phhep-exhep-lat
keywords determinationproposeduncertaintiesdecaydualitylargelifetimemethod
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

To reduce the current theory uncertainties a novel way to determine the $B_c$ lifetime, $\tau_{B_c}$, is proposed. Taking the difference of the $B_c$, and $B$ and $D$ meson decay rates eliminates the leading contributions from the calculation, which exhibit large scale and scheme dependence. The uncertainties in the proposed determination of $\tau_{B_c}$ are analyzed and improvements are proposed. The method predicts a value of $\tau_{B_c}$ in tension with the experimental determination. Several explanations are considered, including underestimation of uncertainties, duality violation and new physics. We discuss quantitative evidence that our method is vitiated by duality violation in the large mass OPE used to calculate nonleptonic decay rates of $B$ and $D$ mesons.

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  1. Bottomoniumlike states in proton collisions: Fragmentation and resummation

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    New TQHL1.1 and TQ4Q1.1 fragmentation functions for doubly and fully bottomed tetraquarks are constructed and evolved, yielding first predictions for bottom-tetraquark plus jet distributions at 14 and 100 TeV.

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