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July 10, 2026The European Physical Journal C0 citationsOpen Access

Configuration and benchmarking of e^+e^- processes with k4GeneratorsConfig

APAlan PriceDZD. Zerwas

Key Points

  • The aim is to enhance the precision of simulations for electron-positron collider processes by automating the benchmarking of event generators.
  • Developed a Python-based package for benchmarking MC generators.
  • Automates configuration translation from universal physics inputs to generator-specific needs.
  • Supports the Key4hep software stack and allows for batch processing.
  • Ensures technical consistency in MC simulations across various generators.
  • Reduces human error and improves reproducibility of the configurations.
  • Facilitates straightforward integration of additional generators.

Abstract

Abstract The next generation of electron–positron colliders will require unprecedented precision in both theory and experiment. Sophisticated software frameworks are essential to evaluate detector concepts, optimize designs, and simulating physical processes. In this context, Monte Carlo (MC) event generators play a central role, enabling realistic simulations of Standard Model processes and providing the basis for physics studies. However, technical consistency across different generators remains critical, particularly in domains where agreement is expected. To address this need, we present , a Python-based package that automates the benchmarking process for MC generators. The tool translates universal physics inputs into generator-specific configurations, ensuring consistency, reproducibility, and reduced human error. Its modular design allows for straightforward integration of additional generators, supports batch processing, and provides compatibility with the Key4hep software stack.

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Cite This Study

Price et al. (2026) studied this question.

synapsesocial.com/papers/6a508b966eeac72a437a02cfhttps://doi.org/10.1140/epjc/s10052-026-16049-5
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