Monte Carlos for tau lepton - Standard Model and new physics signatures

One of the purposes of High Energy accelerator experiments is confrontation of theory and measurements in ever new realms. Any new agreement extends theory applicability domain, any discrepancy hints to unexplained, calling for better calculations or new, deeper theory. Often one has to search for s...

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Main Author: Zbigniew Was
Format: Article
Language:English
Published: SciPost 2025-07-01
Series:SciPost Physics Proceedings
Online Access:https://scipost.org/SciPostPhysProc.17.002
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author Zbigniew Was
author_facet Zbigniew Was
author_sort Zbigniew Was
collection DOAJ
description One of the purposes of High Energy accelerator experiments is confrontation of theory and measurements in ever new realms. Any new agreement extends theory applicability domain, any discrepancy hints to unexplained, calling for better calculations or new, deeper theory. Often one has to search for small contributions over large Standard Model background. Multidimensional signatures and complex background subtraction cuts imply that Monte Carlo techniques are indispensable. My talk included description of: KKMC Monte Carlo for $e^+e^- \to \tau^+\tau^- (n\gamma)$ (with $\tau$ decays), generation of additional lepton pairs of SM and New Physics, and contributions from anomalous magnetic and electric dipole moments.
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spelling doaj-art-0758bb9cee4e4397a9eb0a8e9cee4cea2025-08-20T02:47:04ZengSciPostSciPost Physics Proceedings2666-40032025-07-011700210.21468/SciPostPhysProc.17.002Monte Carlos for tau lepton - Standard Model and new physics signaturesZbigniew WasOne of the purposes of High Energy accelerator experiments is confrontation of theory and measurements in ever new realms. Any new agreement extends theory applicability domain, any discrepancy hints to unexplained, calling for better calculations or new, deeper theory. Often one has to search for small contributions over large Standard Model background. Multidimensional signatures and complex background subtraction cuts imply that Monte Carlo techniques are indispensable. My talk included description of: KKMC Monte Carlo for $e^+e^- \to \tau^+\tau^- (n\gamma)$ (with $\tau$ decays), generation of additional lepton pairs of SM and New Physics, and contributions from anomalous magnetic and electric dipole moments.https://scipost.org/SciPostPhysProc.17.002
spellingShingle Zbigniew Was
Monte Carlos for tau lepton - Standard Model and new physics signatures
SciPost Physics Proceedings
title Monte Carlos for tau lepton - Standard Model and new physics signatures
title_full Monte Carlos for tau lepton - Standard Model and new physics signatures
title_fullStr Monte Carlos for tau lepton - Standard Model and new physics signatures
title_full_unstemmed Monte Carlos for tau lepton - Standard Model and new physics signatures
title_short Monte Carlos for tau lepton - Standard Model and new physics signatures
title_sort monte carlos for tau lepton standard model and new physics signatures
url https://scipost.org/SciPostPhysProc.17.002
work_keys_str_mv AT zbigniewwas montecarlosfortauleptonstandardmodelandnewphysicssignatures