arXiv (Cornell University) · 2012 · 45 citations · 26 references
Artificial IntelligenceEngineeringMachine LearningSoftware ToolsSimulationMarkov Chain Monte CarloIntelligent SystemsComplex Event ProcessingModeling And SimulationRobot LearningInstallation InstructionsPhysicsMonte CarloQuantum Field TheoryComputer TutorialAction Model LearningComputer ScienceWorld ModelMonte Carlo SamplingSequential Monte CarloComputational ScienceLlm-based AgentAutomated ReasoningNatural SciencesParticle PhysicsEvent-driven ProgrammingMonte Carlo Method
This is a written account of the computer tutorial offered at the Sixth MC4BSM workshop at Cornell University, March 22-24, 2012. The tools covered during the tutorial include: FeynRules, LanHEP, MadGraph, CalcHEP, Pythia 8, Herwig++, and Sherpa. In the tutorial, we specify a simple extension of the Standard Model, at the level of a Lagrangian. The software tools are then used to automatically generate a set of Feynman rules, compute the invariant matrix element for a sample process, and generate both parton-level and fully hadronized/showered Monte Carlo event samples. The tutorial is designed to be self-paced, and detailed instructions for all steps are included in this write-up. Installation instructions for each tool on a variety of popular platforms are also provided.
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Torbjörn Sjöstrand, S. Mrenna, Peter Skands · Journal of High Energy Physics · 2006 · 8.7K citations · Full text
M. Bähr, Stefan Gieseke, M. Gigg et al. · The European Physical Journal C · 2008 · 1.9K citations · Full text