English

Amplitude analysis of four-body decays using a massively-parallel fitting framework

High Energy Physics - Experiment 2017-12-06 v1 Computational Physics Data Analysis, Statistics and Probability

Abstract

The GooFit Framework is designed to perform maximum-likelihood fits for arbitrary functions on various parallel back ends, for example a GPU. We present an extension to GooFit which adds the functionality to perform time-dependent amplitude analyses of pseudoscalar mesons decaying into four pseudoscalar final states. Benchmarks of this functionality show a significant performance increase when utilizing a GPU compared to a CPU. Furthermore, this extension is employed to study the sensitivity on the D0Dˉ0D^0 - \bar{D}^0 mixing parameters xx and yy in a time-dependent amplitude analysis of the decay D0K+ππ+πD^0 \rightarrow K^+\pi^-\pi^+\pi^-. Studying a sample of 50 000 events and setting the central values to the world average of x=(0.49±0.15)%x = (0.49 \pm0.15) \% and y=(0.61±0.08)%y = (0.61 \pm0.08) \%, the statistical sensitivities of xx and yy are determined to be σ(x)=0.019%\sigma(x) = 0.019 \% and σ(y)=0.019%\sigma(y) = 0.019 \%.

Keywords

Cite

@article{arxiv.1702.06735,
  title  = {Amplitude analysis of four-body decays using a massively-parallel fitting framework},
  author = {C. Hasse and J. Albrecht and A. A. Alves and P. d'Argent and T. D. Evans and J. Rademacker and M. D. Sokoloff},
  journal= {arXiv preprint arXiv:1702.06735},
  year   = {2017}
}

Comments

Proceedings of the 22nd International Conference on Computing in High Energy and Nuclear Physics, CHEP 2016

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