Flavor Physics in the Quark Sector
Massimo Antonelli,D. M. Asner,D. Bauer,Thomas Becher,M. Beneke,Adrian John Bevan,Monika Blanke,C. Bloise,Marcella Bona,A.E. Bondar,C. Bozzi,Joachim Brod,Andrzej J. Buras,N. Cabibbo,Angelo Carbone,G. Cavoto,Vincenzo Cirigliano,Marco Ciuchini,J. P. Coleman,Daniel P Cronin-Hennessy,Jeremy Dalseno,Christine Davies,F. DiLodovico,J. C. Dingfelder,Zdenek Dolezal,S. Donati,W. Dungel,Ulrik Egede,G. Eigen,R. Faccini,Th. Feldmann,F. Ferroni,Jonathan M. Flynn,E. Franco,Masahiro Fujikawa,I. K. Furic,Paolo Gambino,Einan Gardi,Timothy Gershon,Stefano Giagu,Eugene Golowich,T. Goto,Christoph Greub,Christophe Grojean,Diego Guadagnoli,Ulrich Haisch,R. F. Harr,André H. Hoang,Tobias Hurth,Gino Isidori,D. E. Jaffe,Andreas Jüttner,Sebastian Jäger,Alexander Khodjamirian,Patrick Koppenburg,R. Kowalewski,P. Krokovny,Andreas S. Kronfeld,Jack Laiho,G. Lanfranchi,T. E. Latham,J. Libby,Antonio Limosani,D. Lopes Pegna,Cai-Dian Lü,Vittorio Lubicz,Enrico Lunghi,V. Luth,Kim Maltman,William J. Marciano,E. C. Martin,Guido Martinelli,F. Martinez-Vidal,A. Masiero,Vicent Mateu,Federico Mescia,G. B. Mohanty,M. Moulson,Matthias Neubert,Helmut Neufeld,S. Nishida,N. Offen,M. Palutan,P. Paradisi,Z. Parsa,E. Passemar,M. Patel,Ben D. Pecjak,Alexey A. Petrov,Antonio Pich,Maurizio Pierini,Brad Plaster,A. Powell,S. Prell,J. Rademaker,M. Rescigno,S. Ricciardi,Patrick Robbe,Eduardo Rodrigues,Marcello Rotondo,R. Sacco,C. J. Schilling,O. Schneider,Enno E. Scholz,B. A. Schumm,C. Schwanda,A. J. Schwartz,Barbara Sciascia,J. Serrano,Junko Shigemitsu,I. P.J. Shipsey,A.L. Sibidanov,Luca Silvestrini,F. Simonetto,Silvano Simula,Caleb Smith,Amarjit Soni,Lars Sonnenschein,Viola Sordini,M. Sozzi,T. Spadaro,P. Spradlin,A. Stocchi,Nazario Tantalo,Cecilia Tarantino,A. V. Telnov,D. Tonelli,I. S. Towner,K. Trabelsi,Phillip Urquijo,R. S. Van de Water,R. Van Kooten,Javier Virto,G. Volpi,Rainer Wanke,S. Westhoff,G. Wilkinson,Matthew Wingate,Yuehong Xie,Jure Zupan +139 more
TL;DR: A review of the status of quark flavor physics can be found in this article, which summarizes the results of the current generation of experiments that is about to be completed and confronts these results with the theoretical understanding of the field.
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Abstract: One of the major challenges of particle physics has been to gain an in-depth understanding of the role of quark flavor and measurements and theoretical interpretations of their results have advanced tremendously: apart from masses and quantum numbers of flavor particles, there now exist detailed measurements of the characteristics of their interactions allowing stringent tests of Standard Model predictions. Among the most interesting phenomena of flavor physics is the violation of the CP symmetry that has been subtle and difficult to explore. Till early 1990s observations of CP violation were confined to neutral $K$ mesons, but since then a large number of CP-violating processes have been studied in detail in neutral $B$ mesons. In parallel, measurements of the couplings of the heavy quarks and the dynamics for their decays in large samples of $K, D$, and $B$ mesons have been greatly improved in accuracy and the results are being used as probes in the search for deviations from the Standard Model. In the near future, there will be a transition from the current to a new generation of experiments, thus a review of the status of quark flavor physics is timely. This report summarizes the results of the current generation of experiments that is about to be completed and it confronts these results with the theoretical understanding of the field.
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Review of lattice results concerning low-energy particle physics
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TL;DR: The determination of the light-quark masses, the form factor, and the decay-constant ratio arising in semileptonic $$K \rightarrow \pi $$K→π transition at zero momentum transfer are reported on.
1K
Review of lattice results concerning low-energy particle physics: Flavour Lattice Averaging Group (FLAG).
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TL;DR: The concept for this analysis is to a large degree based on earlier BABAR work and we acknowledge the guidance provided by M. Mazur as discussed by the authors, who consulted with theorists A. Datta, S. Westhoff,S. Fajfer, J. Kamenik, and I. Nisandzic on the calculations of the charged Higgs contributions to the decay rates.
FLAG Review 2019
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