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(N)LO Simulation of Chargino Production and Decay
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We consider NLO chargino production and decays at the ILC. For this, we present an NLO extension of the Monte Carlo Event Generator Whizard including the NLO production. For photonic corrections, we use both a fixed order and a resummation approach. The latter method evades the problem of negative event weights and automatically includes leading higher order corrections. We present results for cross sections and event generation for both methods. As a first step towards a full NLO Monte Carlo, we consider a LO implementation of the chargino production and subsequent leptonic decay and investigate the precision of the sneutrino mass determination by means of lepton energy distributions in chargino decays. The SM and SUSY backgrounds are included in our study using full matrix elements as well as smearing effects from ISR and beamstrahlung. Without using energy distribution fits, the sneutrino mass can be determined with an error in the percent regime.
Forward citations
Cited by 2 Pith papers
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New developments in the Whizard event generator
Whizard's recent and planned developments are summarized: NLO EW automation, loop-induced processes, UFO2 support, GPU integration, and future EW PDFs, with several items still in progress.
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Challenges for Monte Carlo generators
A review of Monte Carlo generator capabilities and challenges for future lepton colliders, covering beams, QED/EW corrections, showers, BSM simulation, and performance.
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