New hadronic currents in TAUOLA: for confrontation with the experimental data
arXiv:1201.6608 · doi:10.1016/j.nuclphysbps.2012.02.040
Abstract
The status of implementation of new hadronic currents into the Monte Carlo system for simulation of tau-lepton production and decay in high-energy accelerator experiments is reviewed. Since the tau-lepton conference in 2010 substantial progress was achieved: (i) For the TAUOLA Monte Carlo generator of tau-lepton decays, automated and simultaneous use of many versions of form factors for the calculation of optional weights for fits was developed and checked to work in the Belle and BaBar software environment. Alternative parameterizations of hadronic currents based on the Resonance Chiral approach are available now. This was achieved for more than 88% of the total tau hadronic width. (ii) the TAUOLA universal interface based on HepMC (the C++ event record) is available. This is the case for C++ users of PHOTOS Monte Carlo for radiative corrections in decays, as well. An algorithm for weighted events to explore spin effects in analysis of hard processes was prepared. (iii) Kernels featuring a complete first-order matrix element are available now for PHOTOS users interested in decays of Z and W bosons. New tests with different options of matrix elements for those and for Kl3 decays are available as well. Presented results illustrate the status of the projects performed in collaboration with Zofia Czyczula, Nadia Davidson, Tomasz Przedzinski, Olga Shekhovtsova, Elzbieta Richter-Was, Pablo Roig, Qingjun Xu and others.
5 pages, 2 figures. Talk given in the 'From PHI to PSI 2011' Conference (Novosibirsk, Russia). To appear in the Proceedings
References in corpus (6)
- Quest for precision in hadronic cross sections at low energy: Monte Carlo tools vs. experimental data
- tau -> pi pi pi nu_tau decays and the a_1(1260) off-shell width revisited
- Hadron structure in tau -> KKpi nu_tau decays
- Scalar QED, NLO and PHOTOS Monte Carlo
- MC-TESTER: a universal tool for comparisons of Monte Carlo predictions for particle decays in high energy physics
- Matching NLO parton shower matrix element with exact phase space: case of W -> l nu (gamma) and gamma^* -> pi^+pi^-(gamma)