TauSpinner algorithms for including spin and New Physics effects in $γγ\rightarrow ττ$ process

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Hauptverfasser: Korchin, A. Yu., Richter-Was, E., Was, Z.
Format: Preprint
Veröffentlicht: 2025
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author Korchin, A. Yu.
Richter-Was, E.
Was, Z.
author_facet Korchin, A. Yu.
Richter-Was, E.
Was, Z.
contents The possible anomalous New Physics contributions to electric and magnetic dipole moments of the $τ$ lepton has brought renewed interest in development of new charge-parity violating signatures in the $τ$-pair production at Belle II energies, and also at higher energies of the LHC and the FCC. In this paper, we discuss effects of anomalous contributions to cross-section and spin correlations in the $γγ\to τ^-τ^+$ production processes, with $τ$ decays included. Such processes have been observed in the $pp$ and PbPb collisions at CERN LHC experiments. Because of complex nature of the resulting distributions, Monte Carlo techniques are useful, in particular of event reweighting with studied New Physics phenomena. For the $γγ$ processes, extensions of the Standard Model amplitudes are implemented in the TauSpinner program. This is mainly with electric and magnetic dipole moments in mind, but algorithm can be easily extended to other New Physics interactions, provided they can be encapsulated into similar form-factors in the Standard Model structure of matrix elements. Basic formulas and algorithm principles are presented, numerical examples are provided as illustration. Information on how to use the program is given in Appendix of the paper.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15213
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle TauSpinner algorithms for including spin and New Physics effects in $γγ\rightarrow ττ$ process
Korchin, A. Yu.
Richter-Was, E.
Was, Z.
High Energy Physics - Phenomenology
The possible anomalous New Physics contributions to electric and magnetic dipole moments of the $τ$ lepton has brought renewed interest in development of new charge-parity violating signatures in the $τ$-pair production at Belle II energies, and also at higher energies of the LHC and the FCC. In this paper, we discuss effects of anomalous contributions to cross-section and spin correlations in the $γγ\to τ^-τ^+$ production processes, with $τ$ decays included. Such processes have been observed in the $pp$ and PbPb collisions at CERN LHC experiments. Because of complex nature of the resulting distributions, Monte Carlo techniques are useful, in particular of event reweighting with studied New Physics phenomena. For the $γγ$ processes, extensions of the Standard Model amplitudes are implemented in the TauSpinner program. This is mainly with electric and magnetic dipole moments in mind, but algorithm can be easily extended to other New Physics interactions, provided they can be encapsulated into similar form-factors in the Standard Model structure of matrix elements. Basic formulas and algorithm principles are presented, numerical examples are provided as illustration. Information on how to use the program is given in Appendix of the paper.
title TauSpinner algorithms for including spin and New Physics effects in $γγ\rightarrow ττ$ process
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2506.15213