English

Global Decay Chain Vertex Fitting at B-Factories

High Energy Physics - Experiment 2020-07-15 v1

Abstract

We present a particle vertex fitting method designed for B factories. The presented method uses a Kalman Filter to solve a least squares estimate to globally fit decay chains, as opposed to traditional methods that fit each vertex at a time. It allows for the extraction of particle momenta, energies, vertex positions and flight lengths, as well as the uncertainty estimates of these quantities. Furthermore, it allows for the precise extraction of vertex parameters in complex decay chains containing neutral final state particles, such as γ{\gamma} or KL0K^0_L , which cannot properly be tracked due to limited spatial resolution of longitudinally segmented single-layer crystal calorimeters like the Belle II ECL. The presented technique can be used to suppress combinatorial background and improve resolutions on measured parameters. We present studies using Monte Carlo simulations of collisions in the Belle II experiment, where modes with neutrals are crucial to the physics analysis program.

Keywords

Cite

@article{arxiv.1901.11198,
  title  = {Global Decay Chain Vertex Fitting at B-Factories},
  author = {J. -F. Krohn and P. Urquijo and F. Abudinén and S. Cunliffe and T. Ferber and M. Gelb and J. Gemmler and P. Goldenzweig and T. Keck and I. Komarov and T. Kuhr and L. Ligioi and M. Lubej and F. Meier and F. Metzner and C. Pulvermacher and M. Ritter and U. Tamponi and F. Tenchini and A. Zupanc},
  journal= {arXiv preprint arXiv:1901.11198},
  year   = {2020}
}
R2 v1 2026-06-23T07:27:53.675Z