FeynRules

Beyond the minimal supersymmetric standard model: from theory to phenomenology. Thanks to the latest development in the field of Monte Carlo event generators and satellite programs allowing for a straightforward implementation of any beyond the standard model theory in those tools, studying the property of any softly-broken supersymmetric theory is become an easy task. We illustrate this statement in the context of two nonminimal supersymmetric theories, namely the minimal supersymmetric standard model with $R$-parity violation and the minimal $R$-symmetric supersymmetric standard model and choose to probe interaction vertices involving a nonstandard color structure and the sector of the top quark. We show how to efficiently implement these theories in the {sc Mathematica} package {sc FeynRules} and use its interfaces to Monte Carlo tools for phenomenological studies. For the latter, we employ the latest version of the {sc MadGraph} program.


References in zbMATH (referenced in 100 articles , 2 standard articles )

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  1. Goudelis, Andreas; Mohan, Kirtimaan A.; Sengupta, Dipan: Clockworking FIMPs (2018)
  2. Senol, A.; Denizli, H.; Yilmaz, A.; Turk Cakir, I.; Oyulmaz, K. Y.; Karadeniz, O.; Cakir, O.: Probing the effects of dimension-eight operators describing anomalous neutral triple gauge boson interactions at FCC-hh (2018)
  3. Summ, Benjamin; Voigt, Alexander: Extending the universal one-loop effective action by regularization scheme translating operators (2018)
  4. Balkin, Reuven; Ruhdorfer, Maximilian; Salvioni, Ennio; Weiler, Andreas: Charged composite scalar dark matter (2017)
  5. Blanke, Monika; Kast, Simon: Top-flavoured dark matter in dark minimal flavour violation (2017)
  6. Danielsson, Ulf; Enberg, Rikard; Ingelman, Gunnar; Mandal, Tanumoy: Heavy photophilic scalar at the LHC from a varying electromagnetic coupling (2017)
  7. Egana-Ugrinovic, Daniel: The minimal fermionic model of electroweak baryogenesis (2017)
  8. Han, Chengcheng; Kim, Doojin; Kim, Minho; Kong, Kyoungchul; Lim, Sung Hak; Park, Myeonghun: Identifying a new particle with jet substructures (2017)
  9. Ilaria Brivio, Yun Jiang, Michael Trott: The SMEFTsim package, theory and tools (2017) arXiv
  10. Jason Aebischer, Ilaria Brivio, Alejandro Celis, Jared A. Evans, Yun Jiang, Jacky Kumar, Xuanyou Pan, Werner Porod, Janusz Rosiek, David Shih, Florian Staub, David M. Straub, Danny van Dyk, Avelino Vicente: WCxf: an exchange format for Wilson coefficients beyond the Standard Model (2017) arXiv
  11. Juan C. Criado: MatchingTools: a Python library for symbolic effective field theory calculations (2017) arXiv
  12. Khoze, Valentin V.; Plascencia, Alexis D.; Sakurai, Kazuki: Simplified models of dark matter with a long-lived co-annihilation partner (2017)
  13. Ko, P.; Natale, Alexander; Park, Myeonghun; Yokoya, Hiroshi: Simplified DM models with the full SM gauge symmetry: the case of (t)-channel colored scalar mediators (2017)
  14. Li, Hai Tao; Wang, Jian: Next-to-next-to-leading order (N)-jettiness soft function for one massive colored particle production at hadron colliders (2017)
  15. Natale, Alexander: A radiative model of quark masses with binary tetrahedral symmetry (2017)
  16. Reddy, Dandala R. K. (ed.); Odintsov, Sergei D. (ed.); Harko, Tiberiu (ed.): Dark matter and dark energy cosmologies and alternative theories of gravitation (2017)
  17. Tang, Yi-Lei; Zhu, Shou-hua: Dark matter relic abundance and light sterile neutrinos (2017)
  18. Bi, Xiao-Jun; Xiang, Qian-Fei; Yin, Peng-Fei; Yu, Zhao-Huan: The 750 GeV diphoton excess at the LHC and dark matter constraints (2016)
  19. Boucenna, Sofiane M.; Krauss, Martin B.; Nardi, Enrico: Dark matter from the vector of (\mathrmSO(10)) (2016)
  20. Cacciapaglia, Giacomo; Deandrea, Aldo; Deutschmann, Nicolas: Dark matter and localised fermions from spherical orbifolds? (2016)