MadGraph

The version 5 of the MadGraph Matrix Element Generator for the simulation of parton-level events for decay and collision processes at high energy colliders. Allows matrix element generation and event generation for any model that can be written as a Lagrangian, using the output of the FeynRules Feynman rule calculator. Provides output in multiple formats and languages, including Fortran MadEvent, Fortran Standalone matrix elements, C++ matrix elements, and Pythia 8 process libraries.


References in zbMATH (referenced in 96 articles )

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  1. Dutta, Manoranjan; Bhattacharya, Subhaditya; Ghosh, Purusottam; Sahu, Narendra: Singlet-doublet Majorana dark matter and neutrino mass in a minimal type-I seesaw scenario (2021)
  2. Ablat, Alim; Dulat, Sayipjamal; Rashidin, Reyima; Ruzi, Alim; Yalkun, Nijat: The impact of single top data on CT14nnlo PDFs (2020)
  3. Denner, Ansgar; Dittmaier, Stefan: Electroweak radiative corrections for collider physics (2020)
  4. Gao, Jun; Harland-Lang, Lucian; Rojo, Juan: The structure of the proton in the LHC precision era (2018)
  5. Sjodahl, Malin; Thorén, Johan: QCD multiplet bases with arbitrary parton ordering (2018)
  6. Belyaev, Alexander; Cacciapaglia, Giacomo; Cai, Haiying; Ferretti, Gabriele; Flacke, Thomas; Parolini, Alberto; Serodio, Hugo: Di-boson signatures as standard candles for partial compositeness (2017)
  7. Ilaria Brivio, Yun Jiang, Michael Trott: The SMEFTsim package, theory and tools (2017) arXiv
  8. Liew, Seng Pei; Luo, Feng: Effects of QCD bound states on dark matter relic abundance (2017)
  9. Valerio Bertone, Stefano Carrazza, Nathan P. Hartland: APFELgrid : A high performance tool for parton density determinations (2017) not zbMATH
  10. Zhang, Tonglin; Yang, Baijian: An exact approach to ridge regression for big data (2017)
  11. Degrande, Celine: Automatic evaluation of UV and (R_2) terms for beyond the standard model Lagrangians: a proof-of-principle (2015)
  12. Enberg, Rikard; Klemm, William; Moretti, Stefano; Munir, Shoaib; Wouda, Glenn: Charged Higgs boson in the (W^\pm) Higgs channel at the Large Hadron Collider (2015)
  13. Gorbahn, Martin; No, Jose Miguel; Sanz, Verónica: Benchmarks for Higgs effective theory: extended Higgs sectors (2015)
  14. Hirschi, Valentin; Mattelaer, Olivier: Automated event generation for loop-induced processes (2015)
  15. Jäger, Barbara; von Manteuffel, Andreas; Thier, Stephan: Slepton pair production in association with a jet: NLO-QCD corrections and parton-shower effects (2015)
  16. Kozaczuk, Jonathan; Profumo, Stefano; Haskins, Laurel Stephenson; Wainwright, Carroll L.: Cosmological phase transitions and their properties in the NMSSM (2015)
  17. Lansberg, J. P.; Mikkelsen, R.; Uggerhøj, U. I.: Near-threshold production of (W^\pm), (Z^0), and (H^0) at a fixed-target experiment at the future ultrahigh-energy proton colliders (2015)
  18. Sjodahl, Malin; Thorén, Johan: Decomposing color structure into multiplet bases (2015)
  19. Staub, Florian: Exploring new models in all detail with \textttSARAH (2015)
  20. Alioli, S.; Badger, S.; Bellm, J.; Biedermann, B.; Boudjema, F.; Cullen, G.; Denner, A.; van Deurzen, H.; Dittmaier, S.; Frederix, R.; Frixione, S.; Garzelli, M. V.; Gieseke, S.; Glover, E. W. N.; Greiner, N.; Heinrich, G.; Hirschi, V.; Höche, S.; Huston, J.; Ita, H.; Kauer, N.; Krauss, F.; Luisoni, G.; Maître, D.; Maltoni, F.; Nason, P.; Oleari, C.; Pittau, R.; Plätzer, S.; Pozzorini, S.; Reina, L.; Reuschle, C.; Robens, T.; Schlenk, J.; Schönherr, M.; Siegert, F.; von Soden-Fraunhofen, J. F.; Tackmann, F.; Tramontano, F.; Uwer, P.; Salam, G.; Skands, P.; Weinzierl, S.; Winter, J.; Yundin, V.; Zanderighi, G.; Zaro, M.: Update of the binoth LES houches accord for a standard interface between Monte Carlo tools and one-loop programs (2014)

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