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Impact of systematic and amplitude model correlations within and between systems of combined input: A case study with $\phi_2$ ($\alpha$) by Dalseno, J. is a scholarly article available to read on EtoBox.
What is Impact of systematic and amplitude model correlations within and between systems of combined input: A case study with $\phi_2$ ($\alpha$) about?
The pursuit of experimental precision in the $CP$-violating weak phase $\phi_2$ ($\alpha$) is not without its challenges, in part due to the need to combine multiple physical observables from various related decay channels, and therein lies a fundamental issue. Similarities in analysis procedures give rise to systematic correlations between the measured inputs constraining $\phi_2$ that must be taken into account to avoid bias. Specifically, in the case of the irreducible model uncertainty accompanying analyses involving the $\rho$ meson, it is demonstrated that ignoring correlations derived from its pole parameters, or indeed even treating correlations individually contained within each decay channel, can ultimately lead to a bias in $\phi_2$ of $\mathcal{O}(1^\circ)$. Correct treatment on the other hand, markedly reduces wandering of its central value as a function of the model uncertainty strength with the added dividend of a further improved overall uncertainty. Bias in the combination of $B^0 \to (\rho \pi)^0$ and $B \to \rho \rho$ is also seen to depend on the statistical strength of the former in relation to that of the model uncertainty in the latter. This work can inspire
- Author
- Dalseno, J.
- Published
- 2021
- Language
- EN