Changes between Version 3 and Version 4 of Francqui
- Timestamp:
- May 2, 2012, 10:21:31 AM (13 years ago)
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Francqui
v3 v4 77 77 1. 78 78 * Signal 79 * Events: [attachment:hww-signal.lhe.gz Parton Level] ||[attachment:hww-signal.lhco.gz Detector Level]80 * Plots: [attachment:hww-signal-lhe.pdf Parton Level] ||[attachment:hww-signal-lhco.pdf Detector Level]79 * Events: [attachment:hww-signal.lhe.gz Parton Level] [attachment:hww-signal.lhco.gz Detector Level] 80 * Plots: [attachment:hww-signal-lhe.pdf Parton Level] [attachment:hww-signal-lhco.pdf Detector Level] 81 81 * Background 82 * Events: [attachment:hww-background.lhe.gz Parton Level] <span style="color: #000000;">|| </span>[attachment:hww-background.lhco.gz Detector Level]83 * Plots: [attachment:hww-background-lhe.pdf Parton Level] <span style="color: #000000;">|| </span>[attachment:hww-background-lhco.pdf Detector Level]82 * Events: [attachment:hww-background.lhe.gz Parton Level] [attachment:hww-background.lhco.gz Detector Level] 83 * Plots: [attachment:hww-background-lhe.pdf Parton Level] [attachment:hww-background-lhco.pdf Detector Level] 84 84 1. Top associated production $pp \to t\bar tH$ with $H \to b \bar b$ 85 85 * Signal + Background samples: 86 * Events: [attachment:ttbb.lhe.gz Parton Level] ||[attachment:ttbb.lhco.gz Detector Level]87 * Plots: [attachment:ttbb-lhe.pdf Parton Level] ||[attachment:ttbb-lhco.pdf Detector Level]86 * Events: [attachment:ttbb.lhe.gz Parton Level] [attachment:ttbb.lhco.gz Detector Level] 87 * Plots: [attachment:ttbb-lhe.pdf Parton Level] [attachment:ttbb-lhco.pdf Detector Level] 88 88 ====== Advanced exercises 2: Implementation of a new model in MadGraph or [http://feynrules.phys.ucl.ac.be/ FeynRules] + MadGraph ====== 89 89 … … 91 91 === For !FeynRules download and information, see the [http://feynrules.phys.ucl.ac.be/ FeynRules wiki] === 92 92 * Implement a (part of a) Standard Model extension into MadGraph, specific for studying a given process. Generate events, study relevant distributions. 93 * Determine most relevant Standard Model backgrounds with identical final states ( “non-reducible”). If not too complicated, generate backgrounds with cuts determined from signal distributions.94 * Which other ( “reducible”) backgrounds might be important?93 * Determine most relevant Standard Model backgrounds with identical final states ("non-reducible"). If not too complicated, generate backgrounds with cuts determined from signal distributions. 94 * Which other ("reducible") backgrounds might be important? 95 95 * Can the signal be seen at Tevatron? At the LHC? 96 96 === Animations ===