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A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper
Lattice quantum chromodynamics has proven to be an indispensable method to determine nonperturbative strong contributions to weak decay processes. In this white paper for the Snowmass community planning process we highlight achievements and future avenues of research for lattice calculations of weak...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
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2022
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Acceso en línea: | http://cds.cern.ch/record/2811281 |
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author | Boyle, Peter A. Chakraborty, Bipasha Davies, Christine T.H. DeGrand, Thomas DeTar, Carleton Del Debbio, Luigi El-Khadra, Aida X. Erben, Felix Flynn, Jonathan M. Gámiz, Elvira Giusti, Davide Gottlieb, Steven Hansen, Maxwell T. Heitger, Jochen Hill, Ryan Jay, William I. Jüttner, Andreas Koponen, Jonna Kronfeld, Andreas Lehner, Christoph Lytle, Andrew T. Martinelli, Guido Meinel, Stefan Monahan, Christopher J. Neil, Ethan T. Portelli, Antonin Simone, James N. Simula, Silvano Sommer, Rainer Soni, Amarjit Tsang, J. Tobias Van de Water, Ruth S. Vaquero, Alejandro Vittorio, Ludovico Witzel, Oliver |
author_facet | Boyle, Peter A. Chakraborty, Bipasha Davies, Christine T.H. DeGrand, Thomas DeTar, Carleton Del Debbio, Luigi El-Khadra, Aida X. Erben, Felix Flynn, Jonathan M. Gámiz, Elvira Giusti, Davide Gottlieb, Steven Hansen, Maxwell T. Heitger, Jochen Hill, Ryan Jay, William I. Jüttner, Andreas Koponen, Jonna Kronfeld, Andreas Lehner, Christoph Lytle, Andrew T. Martinelli, Guido Meinel, Stefan Monahan, Christopher J. Neil, Ethan T. Portelli, Antonin Simone, James N. Simula, Silvano Sommer, Rainer Soni, Amarjit Tsang, J. Tobias Van de Water, Ruth S. Vaquero, Alejandro Vittorio, Ludovico Witzel, Oliver |
author_sort | Boyle, Peter A. |
collection | CERN |
description | Lattice quantum chromodynamics has proven to be an indispensable method to determine nonperturbative strong contributions to weak decay processes. In this white paper for the Snowmass community planning process we highlight achievements and future avenues of research for lattice calculations of weak $b$ and $c$ quark decays, and point out how these calculations will help to address the anomalies currently in the spotlight of the particle physics community. With future increases in computational resources and algorithmic improvements, percent level (and below) lattice determinations will play a central role in constraining the standard model or identifying new physics. |
id | cern-2811281 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28112812023-07-27T04:11:03Zhttp://cds.cern.ch/record/2811281engBoyle, Peter A.Chakraborty, BipashaDavies, Christine T.H.DeGrand, ThomasDeTar, CarletonDel Debbio, LuigiEl-Khadra, Aida X.Erben, FelixFlynn, Jonathan M.Gámiz, ElviraGiusti, DavideGottlieb, StevenHansen, Maxwell T.Heitger, JochenHill, RyanJay, William I.Jüttner, AndreasKoponen, JonnaKronfeld, AndreasLehner, ChristophLytle, Andrew T.Martinelli, GuidoMeinel, StefanMonahan, Christopher J.Neil, Ethan T.Portelli, AntoninSimone, James N.Simula, SilvanoSommer, RainerSoni, AmarjitTsang, J. TobiasVan de Water, Ruth S.Vaquero, AlejandroVittorio, LudovicoWitzel, OliverA lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paperhep-phParticle Physics - Phenomenologyhep-exParticle Physics - Experimenthep-latParticle Physics - LatticeLattice quantum chromodynamics has proven to be an indispensable method to determine nonperturbative strong contributions to weak decay processes. In this white paper for the Snowmass community planning process we highlight achievements and future avenues of research for lattice calculations of weak $b$ and $c$ quark decays, and point out how these calculations will help to address the anomalies currently in the spotlight of the particle physics community. With future increases in computational resources and algorithmic improvements, percent level (and below) lattice determinations will play a central role in constraining the standard model or identifying new physics.arXiv:2205.15373CERN-TH-2022-036FERMILAB-CONF-22-433-SCD-TJLAB-THY-22-3582, MITP-22-020MIT-CTP/5413MS-TP-22-07SI-HEP-2022-11oai:cds.cern.ch:28112812022-05-30 |
spellingShingle | hep-ph Particle Physics - Phenomenology hep-ex Particle Physics - Experiment hep-lat Particle Physics - Lattice Boyle, Peter A. Chakraborty, Bipasha Davies, Christine T.H. DeGrand, Thomas DeTar, Carleton Del Debbio, Luigi El-Khadra, Aida X. Erben, Felix Flynn, Jonathan M. Gámiz, Elvira Giusti, Davide Gottlieb, Steven Hansen, Maxwell T. Heitger, Jochen Hill, Ryan Jay, William I. Jüttner, Andreas Koponen, Jonna Kronfeld, Andreas Lehner, Christoph Lytle, Andrew T. Martinelli, Guido Meinel, Stefan Monahan, Christopher J. Neil, Ethan T. Portelli, Antonin Simone, James N. Simula, Silvano Sommer, Rainer Soni, Amarjit Tsang, J. Tobias Van de Water, Ruth S. Vaquero, Alejandro Vittorio, Ludovico Witzel, Oliver A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper |
title | A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper |
title_full | A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper |
title_fullStr | A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper |
title_full_unstemmed | A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper |
title_short | A lattice QCD perspective on weak decays of b and c quarks Snowmass 2022 White Paper |
title_sort | lattice qcd perspective on weak decays of b and c quarks snowmass 2022 white paper |
topic | hep-ph Particle Physics - Phenomenology hep-ex Particle Physics - Experiment hep-lat Particle Physics - Lattice |
url | http://cds.cern.ch/record/2811281 |
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