CERN Accelerating science

Report
Report number arXiv:1905.05078 ; CERN-2020-003 ; BU-HEPP-19-03 ; CERN-TH-2019-061 ; CP3-19-22 ; DESY-19-072 ; FR-PHENO-2019-005 ; IFIC/19-23 ; IFT-UAM-CSIC-19-058 ; IPhT-19-050 ; IPPP/19/32 ; KW 19-003 ; MPP-2019-84 ; LTH 1203 ; ZU-TH-22-19 ; TUM-HEP-1200-19 ; TTP19-008 ; TTK-19-19 ; CERN-2020-003
Conference title Theory for the FCC-ee: Report on the 11th FCC-ee Workshop Theory and Experiments
CERN Yellow Report Front Cover
Related conference title(s) 11th FCC-ee workshop
Date(s), location 08 - 11 Jan 2019, Geneva, Switzerland
Editor(s) Blondel, A. (ed.) (Geneva U.) ; Gluza, J. (ed.) (Silesia U. ; Hradec Kralove U.) ; Jadach, S. (ed.) (Cracow, INP) ; Janot, P. (ed.) (CERN) ; Riemann, T. (ed.) (Silesia U. ; DESY, Zeuthen) ; Abreu, S. (Louvain U., CP3) ; Aguilera-Verdugo, J.J. (Valencia U.) ; Arbuzov, A.B. (Dubna, JINR) ; Baglio, J. (Tubingen U.) ; Bakshi, S.D. (Indian Inst. Tech., Kanpur) ; Banerjee, S. (Louisville U.) ; Beneke, M. (Munich, Tech. U.) ; Bobeth, C. (Munich, Tech. U.) ; Bogner, C. (Mainz U., Inst. Phys.) ; Bondarenko, S.G. (Dubna, JINR) ; Borowka, S. (CERN) ; Braß, S. (Siegen U.) ; Carloni Calame, C.M. (INFN, Pavia) ; Chakrabortty, J. (Indian Inst. Tech., Kanpur) ; Chiesa, M. (Wurzburg U.) ; Chrzaszcz, M. (Cracow, INP) ; d'Enterria, D. (CERN) ; Domingo, F. (U. Bonn, Phys. Inst., BCTP) ; Dormans, J. (Freiburg U.) ; Driencourt-Mangin, F. (Valencia U.) ; Dydyshka, Ya.V. (Unlisted, RU) ; Erler, J. (U. Mainz, PRISMA ; Mexico U.) ; Febres Cordero, F. (Freiburg U. ; Florida State U.) ; Gracey, J.A. (Liverpool U.) ; He, Zhi-Guo (Hamburg U., Inst. Theor. Phys. II) ; Heinrich, G. (Munich, Max Planck Inst.) ; Heinemeyer, S. (Madrid, IFT ; Cantabria Inst. of Phys. ; Madrid, ICM) ; Hönemann, I. (Mainz U., Inst. Phys.) ; Ita, H. (Freiburg U.) ; Jahn, S. (Munich, Max Planck Inst.) ; Jegerlehner, F. (DESY, Zeuthen ; Humboldt U., Berlin) ; Jones, S.P. (CERN) ; Kalinovskaya, L.V. (Unlisted, RU) ; Kardos, A. (U. Debrecen, Inst. Phys.) ; Kerner, M. (Zurich U.) ; Kilian, W. (Siegen U.) ; Kluth, S. (Munich, Max Planck Inst.) ; Kniehl, B.A. (Silesia U. ; CERN) ; Maier, A. (DESY, Zeuthen) ; Maierhöfer, P. (Freiburg U.) ; Montagna, G. (Pavia U. ; INFN, Pavia) ; Nicrosini, O. (INFN, Pavia) ; Ohl, T. (Wurzburg U.) ; Page, B. (Saclay) ; Paßehr, S. (Paris, LPTHE) ; Patra, S.K. (Indian Inst. Tech., Kanpur) ; Pittau, R. (CAFPE, Granada) ; Piccinini, F. (INFN, Pavia) ; Placzek, W. (Jagiellonian U.) ; Plenter, J. (Valencia U.) ; Ramírez-Uribe, S. (Valencia U.) ; Reuter, J. (DESY) ; Rodrigo, G. (Valencia U.) ; Rothe, V. (DESY) ; Rumyantsev, L.A. (Unlisted, RU ; Southern Federal U.) ; Sadykov, R.R. (Unlisted, RU) ; Schlenk, J. (Durham U., IPPP) ; Sborlini, G.F.R. (Valencia U.) ; Schott, M. (U. Mainz, PRISMA) ; Schweitzer, A. (Zurich, ETH) ; Schwinn, C. (Aachen, Tech. Hochsch.) ; Skrzypek, M. (Cracow, INP) ; Somogyi, G. (MTA-DE, Debrecen) ; Spira, M. (PSI, Villigen) ; Stienemeier, P. (DESY) ; Szafron, R. (Munich, Tech. U.) ; Tempest, K. (Toronto U.) ; Torres Bobadilla, W.J. (Valencia U.) ; Tracz, S. (Valencia U.) ; Trócsányi, Z. (MTA-DE, Debrecen ; Eotvos Lorand U., Budapest, Inst. Theor. Phys.) ; Tulipánt, Z. (MTA-DE, Debrecen) ; Usovitsch, J. (Hamilton Math. Inst., Dublin) ; Verbytskyi, A. (Munich, Max Planck Inst.) ; Ward, B.F.L. (Baylor U.) ; Was, Z. (Cracow, INP) ; Weiglein, G. (DESY) ; Weiland, C. (Pittsburgh U.) ; Weinzierl, S. (U. Mainz, PRISMA) ; Yermolchyk, V.L. (Unlisted, RU) ; Yost, S.A. (Citadel Military Coll.) ; Zurita, J. (KIT, Karlsruhe, IKP ; Karlsruhe U., TTP)
Imprint Geneva : CERN, 2020 - 286 p.
Series (CERN Yellow Reports: Monographs ; 3/2020)
Note References listed in individual contributions to this report.
In: Theory for the FCC-ee : Report on the 11th FCC-ee Workshop Theory and Experiments
ISBN 9789290835608 (print version, paperback)
9789290835592 (electronic version)
DOI e-proceedings: 10.23731/CYRM-2020-003
Subject category hep-ex ; Particle Physics - Experiment ; hep-ph ; Particle Physics - Phenomenology
Abstract The FCC at CERN, a proposed 100-km circular facility with several colliders in succession, culminates with a 100 TeV proton-proton collider. It offers a vast new domain of exploration in particle physics, with orders of magnitude advances in terms of Precision, Sensitivity and Energy. The implementation plan foresees, as a first step, an Electroweak Factory electron-positron collider. This high luminosity facility, operating between 90 and 365 GeV centre-of-mass energy, will study the heavy particles of the Standard Model, Z, W, Higgs, and top with unprecedented accuracy. The Electroweak Factory $e^+e^-$ collider constitutes a real challenge to the theory and to precision calculations, triggering the need for the development of new mathematical methods and software tools. A first workshop in 2018 had focused on the first FCC-ee stage, the Tera-Z, and confronted the theoretical status of precision Standard Model calculations on the Z-boson resonance to the experimental demands. The second workshop in January 2019, which is reported here, extended the scope to the next stages, with the production of W-bosons (FCC-ee-W), the Higgs boson (FCC-ee-H) and top quarks (FCC-ee-tt). In particular, the theo
Copyright/License publication: © 2020-2021 CERN (License: CC-BY-4.0), preprint: © 2019-2021 Authors (License: CC-BY-4.0)

Corresponding record in: Inspire
Contributions in Inspire: C19-01-08.1
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Contributions to this conference in CDS

Introduction and Overview (p. 3)
by Blondel, A
$\alpha_{QED, eff}$(s) for precision physics at the FCC-ee/ILC (p. 9)
by Jegerlehner, F
Precision Quantum Chromodynamics (p. 38)
by d'Enterria, David
Inclusion of mixed QCD-QED resummation effects at higher-orders (p. 51)
by Sborlini, German F. R.
CoLoRFulNNLO at work: A determination of $\alpha_S$ (p. 57)
by Kardos, A
Theoretical Luminosity Precision for the FCC-ee: Overview of the Path to 0.01% (p. 65)
by Ward, Bennie F L
$ e^+ e^-\to\gamma\gamma$ at large angle for FCC-ee luminometry (p. 71)
by Carloni, Carlo M
Prospects for higher-order corrections to W-pair production near threshold in the EFT approach (p. 77)
by Schwinn, C
Perspectives of heavy-quarkonium production at FCC-ee (p. 89)
by He, Zhi-Guo
Vertex functions in QCD -preparation for beyond two loops (p. 97)
by Gracey, J A
Effective field theory approach to QED corrections in flavour physics (p. 107)
by Bobeth, C
Top pair production and mass determination (p. 117)
by Maier, A
Higgs Boson Decays: Theoretical Status (p. 123)
by Spira, Michael
Heritage projects, archivization and re-usability concerns (p. 135)
by Banerjee, Swagato
Scalar 1-loop Feynman integrals in arbitrary space-time dimension $d$ - an update (p. 139)
by Riemann, T
NNLO corrections in 4 dimensions (p. 163)
by Pittau, R
Unsubtractions at NNLO (p. 169)
by Aguilera-Verdugo, J J
Numerics for elliptic Feynman integrals (p. 177)
by Bogner, C
Numerical Multiloop Calculations: Sector Decomposition and QMC Integration in pySecDec (p. 185)
by Borowka, S
Analytics from numerics: five-point QCD amplitudes at two loops (p. 193)
by Abreu, S
Recent developments in Kira (p. 201)
by Maierhöfer, P
Precision Monte Carlo simulations with WHIZARD (p. 205)
by Braß, S
FCC Tau Polarization (p. 211)
by Banerjee, S
Electron-positron annihilation processes in MCSANCee (p. 213)
by Arbuzov, Andrej
Global electroweak fit in the FCC-ee era (p. 217)
by Erler, J
SMEFT (p. 221)
by Das Bakshi, Supratim
(Triple) Higgs-coupling imprints at future lepton colliders (p. 231)
by Baglio, J
Exotic Higgs decays (and Long-Lived Particles) at future colliders (p. 241)
by Zurita, Jose Francisco
Precision Predictions for Higgs decays in the (N)MSSM (p. 247)
by Domingo, F
Theory for the FCC-ee : Report on the 11th FCC-ee Workshop Theory and Experiments : Geneva, Switzerland 08 - 11 Jan 2019
by Blondel, A.

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 Registro creado el 2019-05-15, última modificación el 2021-09-28


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