Flavor Physics and the TeV Scale (eBook, PDF) - Hou, George W. S.
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The ?avor sector carries the largest number of parameters in the Standard Model of particle physics. With no evident symmetry principle behind its existence, it is not as well understood as the SU(3)×SU(2)×U(1) gauge interactions. Yet it tends to be underrated, sometimes even ignored, by the erudite. This is especially so on the verge of the LHC era, where the exploration of the physics of electroweak symmetry breaking at the high energy frontier would soon be the main thrust of the ?eld. Yet, the question of "Who ordered the muon?" by I. I. Rabi lingers. We do not understand why there is…mehr

Produktbeschreibung
The ?avor sector carries the largest number of parameters in the Standard Model of particle physics. With no evident symmetry principle behind its existence, it is not as well understood as the SU(3)×SU(2)×U(1) gauge interactions. Yet it tends to be underrated, sometimes even ignored, by the erudite. This is especially so on the verge of the LHC era, where the exploration of the physics of electroweak symmetry breaking at the high energy frontier would soon be the main thrust of the ?eld. Yet, the question of "Who ordered the muon?" by I. I. Rabi lingers. We do not understand why there is "family" (or generation) replication. That three generations are needed to have CP violation is a partial answer. We do not understand why there are only three generations, but Nature insists on (just about) only three active neutrinos. But then the CP violation with three generations fall far short of what is needed to generate the baryon asymmetry of the Universe. We do not understand why most fermions are so light on the weak symmetry breaking scale (v. e. v. ), yet the third-generation top quark is a v. e. v. scale particle. We do not understand why quarks and leptons look so different, in particular, why neutrinos are rather close to being massless, but then have (at least two) near maximal mixing angles. We shall not, however, concern ourselves with the neutrino sector. It has a life of its own.

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  • Produktdetails
  • Verlag: Springer-Verlag GmbH
  • Seitenzahl: 143
  • Erscheinungstermin: 10. Juni 2009
  • Englisch
  • ISBN-13: 9783540927921
  • Artikelnr.: 44220136
Autorenporträt
George Hou received his degree in theoretical particle physics, and conducted research in USA, Germany and Switzerland for seven years before returning to Taiwan. He soon initiated an experimental group and jointed the Belle experiment at the Japanese B factory, pushing both hardware construction and physics analysis successfully. Since 2008, his focus switched to the CMS experiment at CERN LHC maintaining the tradition of both hardware and analysis arms. His experience thus bridges the gap between both particle phenomenology and experiment, as well as flavor and collider physics. He is currently University Chair professor at National Taiwan University, and also the Chair of AsiaHEP since 2015.
Inhaltsangabe
Introduction

CP Violation in Charmless b sqq Transitions

Bs Mixing and sin2 Bs

H+ Probes: b sGamma, and B ni, D() ni
Electroweak Penguin: b s , Anomalies, Z'

Scalar Interactions and Right-handed Currents

Probes of the Dark Sector at Flavor Facilities

D and K Systems: Box and EWP Redux

Lepton Number Violating and mi, Systems

The Top and the Higgs

Conclusion.

Appendix A: A CP Violation Primer

Appendix B: Requiem to 4th Generation

References
Index