Descriptif ED1516-SU5 CKM matrix, CP violation and the fermion sector of the standard model
 
(20 versions intermédiaires masquées)
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- les cours se dérouleront du 30 mai au 2 juin 2016 <BR>
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- 4 matinées au laboratoire [http://lpnhe.in2p3.fr/spip.php?article80 LPNHE] de 9h a 13h en salle 119 couloir 12-13 au 1er étage
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- <span style="color:navy">les cours se dérouleront en juin 2019</span> - <span style="color:blue">the courses will be delivered in June 2019</span> <BR>
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- <span style="color:navy">4 matinées au laboratoire [http://lpnhe.in2p3.fr/spip.php?article80 LPNHE] de 9h a 13h, salle à confirmer</span> - <span style="color:blue">4 mornings at the [http://lpnhe.in2p3.fr/spip.php?article80 LPNHE] laboratory from 9a.m. to 1p.m.,<br> room to be confirmed</span>.
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<SPAN STYLE="color:red;font-weight:bold"> NEW </SPAN> <SPAN STYLE="background-color: #ffffcc;font-weight:bold">De nouvelles dates vont être proposées pour ce cours</SPAN>  
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<SPAN STYLE="background-color: #ffffcc;font-weight:bold"> CKM matrix, CP violation and the fermion sector of the standard model</SPAN>
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Résumé:
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[mailto:benhaim@in2p3.fr '' <span style="color:olive">Eli BEN-HAIM</span>''] (Enseignant-chercheur, Université Pierre et Marie Curie)
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<span style="color:navy">Résumé</span> - <span style="color:blue">Abstract</span>:
These lectures give a topical review of heavy flavor physics, in particular CP violation and rare decays. They will start with basics of the domain, a historical introduction, and the path towards our current understanding, including a brief description of the relevant experimental facilities. The lectures will describe the current status of the field, emphasize key results from previous experiments, discuss the motivation to study heavy flavor physics in the LHC era, review some selected topics in which new results are expected in the near future, and finally give a brief look at future projects.
These lectures give a topical review of heavy flavor physics, in particular CP violation and rare decays. They will start with basics of the domain, a historical introduction, and the path towards our current understanding, including a brief description of the relevant experimental facilities. The lectures will describe the current status of the field, emphasize key results from previous experiments, discuss the motivation to study heavy flavor physics in the LHC era, review some selected topics in which new results are expected in the near future, and finally give a brief look at future projects.
The course is intended for diverse audience, ranging from those who only have a basic knowledge of particle physics and wish to learn more about the domain to those doing research in flavor physics.
The course is intended for diverse audience, ranging from those who only have a basic knowledge of particle physics and wish to learn more about the domain to those doing research in flavor physics.
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*Part 1: Historical and general introduction to the flavor physics<BR>
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*<span style="color:red;font-weight:bold">Part 1: Historical and general introduction to the flavor physics</span><BR>
Strangeness, Cabibbo angle, prediction and discovery of the charm quark, the third generation, symmetries in particle physics, zoologie of processes and Feynman diagrams<BR>
Strangeness, Cabibbo angle, prediction and discovery of the charm quark, the third generation, symmetries in particle physics, zoologie of processes and Feynman diagrams<BR>
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*Part 2: The standard model in the fermion sector, the CKM matrix and CP violation<BR>
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*<span style="color:red;font-weight:bold">Part 2: The standard model in the fermion sector, the CKM matrix and CP violation</span><BR>
The flavor sector of the standard model and it’s free parameters, week isospin and hypercharge, the origins of the CKM matrix, CP violation in the standard model, the unitarity triangle, introduction to oscillations of neutral mesons.<BR>
The flavor sector of the standard model and it’s free parameters, week isospin and hypercharge, the origins of the CKM matrix, CP violation in the standard model, the unitarity triangle, introduction to oscillations of neutral mesons.<BR>
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*Part 3: B physics at different facilities<BR>
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*<span style="color:red;font-weight:bold">Part 3: B physics at different facilities</span><BR>
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The B hadrons, spectroscopy, B decays, B physics at the Z pole: LEP, B physics at B factories, hadronic machines: Tevatron and the LHC, the future B factories<BR>
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The B hadrons, spectroscopy, B decays, B physics at the Z pole: LEP, B physics at B factories, hadronic machines: Tevatron and the LHC, the super B factory (Belle 2).<BR>
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*Part 4: Key measurements in flavor physics in the past, present and future, determination of the CKM parameters and the unitarity triangle, rare decays…<BR>
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*<span style="color:red;font-weight:bold">Part 4: Key measurements in flavor physics in the past, present and future, determination of the CKM parameters and the unitarity triangle, rare decays…</span><BR>
Introduction to measurements different key quantities: angles and sides of the unitarity triangle, CKM matrix elements, neutral meson oscillation parameters, non perturbative QCD decay parameters, B lifetime. Radiative and rare B decays, Dalitz-plot (amplitude) analysis, fits of the unitarity triangle, and other topics.<BR>
Introduction to measurements different key quantities: angles and sides of the unitarity triangle, CKM matrix elements, neutral meson oscillation parameters, non perturbative QCD decay parameters, B lifetime. Radiative and rare B decays, Dalitz-plot (amplitude) analysis, fits of the unitarity triangle, and other topics.<BR>
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*Part 5:  future of B physics<BR>
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*<span style="color:red;font-weight:bold">Part 5:  future of B physics</span><BR>
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What is left to do and motivations for doing it, evaluation of different scenarios, physics in the next few years in LHCb and in the future super flavor factory BELLE2.<BR>
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What is left to do and motivations for doing it, evaluation of different scenarios, physics in the next few years in LHCb and in the super flavor factory BELLE 2.<BR>
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- <span style="color:navy">le cours est donné en français ou en anglais à la demande des participants</span> - <span style="color:blue">the courses can be delivered in French or English on demand</span>.
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- le cours est donné en français ou en anglais à la demande des participants
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- [https://docs.google.com/forms/d/19sWKO69YtecJXqr71Cmt7fAYMXMCCtX-6EbqaBIL9cQ/viewform?c=0&w=1  S'inscrire] - [https://docs.google.com/forms/d/19sWKO69YtecJXqr71Cmt7fAYMXMCCtX-6EbqaBIL9cQ/viewform?c=0&w=1  Register]

Version actuelle en date du 18 septembre 2018 à 07:19

- les cours se dérouleront en juin 2019 - the courses will be delivered in June 2019
- 4 matinées au laboratoire LPNHE de 9h a 13h, salle à confirmer - 4 mornings at the LPNHE laboratory from 9a.m. to 1p.m.,
room to be confirmed
.

CKM matrix, CP violation and the fermion sector of the standard model

Eli BEN-HAIM (Enseignant-chercheur, Université Pierre et Marie Curie)

Résumé - Abstract:

These lectures give a topical review of heavy flavor physics, in particular CP violation and rare decays. They will start with basics of the domain, a historical introduction, and the path towards our current understanding, including a brief description of the relevant experimental facilities. The lectures will describe the current status of the field, emphasize key results from previous experiments, discuss the motivation to study heavy flavor physics in the LHC era, review some selected topics in which new results are expected in the near future, and finally give a brief look at future projects. The course is intended for diverse audience, ranging from those who only have a basic knowledge of particle physics and wish to learn more about the domain to those doing research in flavor physics.

  • Part 1: Historical and general introduction to the flavor physics

Strangeness, Cabibbo angle, prediction and discovery of the charm quark, the third generation, symmetries in particle physics, zoologie of processes and Feynman diagrams

  • Part 2: The standard model in the fermion sector, the CKM matrix and CP violation

The flavor sector of the standard model and it’s free parameters, week isospin and hypercharge, the origins of the CKM matrix, CP violation in the standard model, the unitarity triangle, introduction to oscillations of neutral mesons.

  • Part 3: B physics at different facilities

The B hadrons, spectroscopy, B decays, B physics at the Z pole: LEP, B physics at B factories, hadronic machines: Tevatron and the LHC, the super B factory (Belle 2).

  • Part 4: Key measurements in flavor physics in the past, present and future, determination of the CKM parameters and the unitarity triangle, rare decays…

Introduction to measurements different key quantities: angles and sides of the unitarity triangle, CKM matrix elements, neutral meson oscillation parameters, non perturbative QCD decay parameters, B lifetime. Radiative and rare B decays, Dalitz-plot (amplitude) analysis, fits of the unitarity triangle, and other topics.

  • Part 5: future of B physics

What is left to do and motivations for doing it, evaluation of different scenarios, physics in the next few years in LHCb and in the super flavor factory BELLE 2.

- le cours est donné en français ou en anglais à la demande des participants - the courses can be delivered in French or English on demand.

- S'inscrire - Register