Les Houches 2017: Physics at TeV Colliders Standard Model Working Group Report
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Les Houches 2017: Physics at TeV Colliders Standard Model Working Group Report

  • Author(s): Bendavid, J;
  • Caola, F;
  • Ciulli, V;
  • Harlander, R;
  • Heinrich, G;
  • Huston, J;
  • Kallweit, S;
  • Prestel, S;
  • Re, E;
  • Tackmann, K;
  • Thaler, J;
  • Theofilatos, K;
  • Andersen, JR;
  • Bellm, J;
  • Berger, N;
  • Bhatia, D;
  • Biedermann, B;
  • Bräuer, S;
  • Britzger, D;
  • Buckley, AG;
  • Camacho, R;
  • Chachamis, G;
  • Chatterjee, S;
  • Chen, X;
  • Chiesa, M;
  • Currie, JR;
  • Denner, A;
  • Dreyer, F;
  • Driencourt-Mangin, F;
  • Forte, S;
  • Garzelli, MV;
  • Gehrmann, T;
  • Gieseke, S;
  • Glover, EWN;
  • Gras, P;
  • Greiner, N;
  • Gütschow, C;
  • Gwenlan, C;
  • Heil, M;
  • Herndon, M;
  • Hirschi, V;
  • Hoang, AH;
  • Höche, S;
  • Huss, A;
  • Jones, SP;
  • Kar, D;
  • Karlberg, A;
  • Kassabov, Z;
  • Kerner, M;
  • Klappert, J;
  • Kuttimalai, S;
  • Lang, J-N;
  • Larkoski, A;
  • Lindert, JM;
  • Loch, P;
  • Long, K;
  • Lönnblad, L;
  • Luisoni, G;
  • Maier, A;
  • Maierhöfer, P;
  • Maître, D;
  • Marzani, S;
  • McFayden, JA;
  • Moult, I;
  • Mozer, M;
  • Mrenna, S;
  • Nachman, B;
  • Napoletano, D;
  • Pandini, C;
  • Papaefstathiou, A;
  • Pellen, M;
  • Perrozzi, L;
  • Pires, J;
  • Plätzer, S;
  • Pozzorini, S;
  • Quackenbush, S;
  • Rabbertz, K;
  • Rauch, M;
  • Reuschle, C;
  • Richardson, P;
  • Ridder, A Gehrmann-De;
  • Rodrigo, G;
  • Rojo, J;
  • Röntsch, R;
  • Rottoli, L;
  • Samitz, D;
  • Samui, T;
  • Sborlini, G;
  • Schönherr, M;
  • Schumann, S;
  • Scyboz, L;
  • Seth, S;
  • Shao, H-S;
  • Siódmok, A;
  • Skands, PZ;
  • Smillie, JM;
  • Soyez, G;
  • Sun, P;
  • Sutton, MR;
  • Tackmann, FJ;
  • Uccirati, S;
  • Weinzierl, S;
  • Yazgan, E;
  • Yuan, C-P;
  • Yuan, F
  • et al.
Abstract

This Report summarizes the proceedings of the 2017 Les Houches workshop on Physics at TeV Colliders. Session 1 dealt with (I) new developments relevant for high precision Standard Model calculations, (II) theoretical uncertainties and dataset dependence of parton distribution functions, (III) new developments in jet substructure techniques, (IV) issues in the theoretical description of the production of Standard Model Higgs bosons and how to relate experimental measurements, (V) phenomenological studies essential for comparing LHC data from Run II with theoretical predictions and projections for future measurements, and (VI) new developments in Monte Carlo event generators.

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