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This volume is a collection of review articles on the most outstanding topics in heavy flavour physics. All the authors have made significant contributions to this field. The book reviews in detail the theoretical structure of heavy flavour physics within the Standard Model and its confrontation with existing experimental data. The physics of the top quark and of the Higgs play an important role in this volume. Beginning with radiative electroweak corrections and their impressive tests at LEP and hadron colliders, the book summarizes the present status of quark mixing, CP violation and rare de
Particles (Nuclear physics) --- Quantum flavor dynamics. --- Dynamics, Quantum flavor --- Flavor dynamics, Quantum --- Quantum theory --- Quarks --- Flavor (Nuclear physics) --- Flavor models (Nuclear physics) --- Top quark models --- Truth models (Nuclear physics) --- Flavor. --- Particules (Physique nucléaire) --- Flavor --- Saveur --- Heavy particles (Nuclear physics)
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This volume provides a comprehensive survey by international experts of recent developments in the field of nuclear structure. Both experimental and theoretical issues are covered. On the experimental side, the latest research and the envisaged developments in the most important laboratories, where radioactive ion beams are available, are reviewed in detail. On the theoretical side, the various approaches to a fundamental theory of nuclear structure starting from the nucleon-nucleon interaction are discussed, going from few-body systems, where "ab initio" calculations are possible, to complex
Nuclear structure --- Nuclear shell theory --- Nuclear shell models --- Nuclear shell structure --- Shell models (Nuclear physics) --- Nuclear models
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This volume is a collection of review articles on the most outstanding topics in heavy flavour physics. All the authors have made significant contributions to this field. The book reviews in detail the theoretical structure of heavy flavour physics and confronts the Standard Model and some of its extensions with existing experimental data.This new edition covers new trends and ideas and includes the latest experimental information. Compared to the previous edition interesting new activities are included and some of the key contributions are updated. Particular attention is paid to the discover
Particles (Nuclear physics) --- Quantum flavor dynamics. --- Quarks. --- Partons --- Quark-gluon interactions --- Dynamics, Quantum flavor --- Flavor dynamics, Quantum --- Quantum theory --- Quarks --- Flavor (Nuclear physics) --- Flavor models (Nuclear physics) --- Top quark models --- Truth models (Nuclear physics) --- Flavor. --- Quantum flavor dynamics --- Particules (Physique nucléaire) --- Saveur
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This volume contains the invited contributions that were presented at the Predeal International Summer School in Nuclear Physics 2006. It covers the recent achievements in the fields of nuclear structure, double beta decay, nuclear multifragmentation, kaon and dilepton production in heavy ion collisions, and the quark-gluon plasma. The treatment is both theoretical and experimental, with emphasis on the collective aspects and related phase transitions. The papers are authored by many leading researchers in the field.
Nuclear structure --- Nuclear collective models --- Phase transformations (Statistical physics) --- Collective models, Nuclear --- Nuclear collective motion --- Nuclear models --- Predeal International Summer School in Nuclear Physics --- International Summer School in Nuclear Physics, Predeal --- Summer School in Nuclear Physics, Predeal International
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This book provides a unified description of elementary particle interactions and the underlying theories, namely the Standard Model and beyond. The authors have aimed at a concise presentation but have taken care that all the basic concepts are clearly described. Written primarily for graduate students in theoretical and experimental particle physics, The Physics of the Standard Model and Beyond conveys the excitement of particle physics, centering upon experimental observations (new and old) and a variety of ideas for their interpretation.
Contents:
Standard model (Nuclear physics) --- Nuclear structure. --- Electroweak interactions. --- Neutrinos --- Supersymmetry. --- Particles (Nuclear physics) --- Flavor (Nuclear physics) --- Flavor models (Nuclear physics) --- Top quark models --- Truth models (Nuclear physics) --- Quarks --- Unified theories --- Symmetry (Physics) --- Neutrino mass --- Atomic mass --- Interactions, Electroweak --- Electromagnetic interactions --- Grand unified theories (Nuclear physics) --- Weak interactions (Nuclear physics) --- Structure, Nuclear --- Nuclear physics --- Nuclear models --- Nuclear reactions --- Mass. --- Flavor. --- Modèle standard (Physique nucléaire) --- Structure nucléaire
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This monograph treats the effectiveness of using flavor physics in offering probes of the TeV scale, while providing a timely interface during the emerging LHC era. By concentrating only with the TeV-scale connection, a large part of the B factory output can be bypassed, and emphasis is placed on loop-induced processes, i.e. virtual, quantum processes that probe TeV-scale physics. The experimental perspective is taken, resulting in selecting processes, rather than the theories or models, as the basis to exploration. Two-thirds of the book is therefore concerned with b -> s or bs <-> sb transitions. The guiding principle is: unless it can be identified as the smoking gun, it is better to stick to the simplest, rather than elaborate, explanation of an effect that may call for New Physics. By focusing on heavy flavor as a probe of TeV-scale physics, technicalities can be employed to unveil their beauty, without getting ensnared in them, while aiming for the deeper, higher-scale physics that such probes provide. This tract originated from a plenary talk at the SUSY 2007 conference in Karlsruhe, Germany.
B mesons. --- CP violation (Nuclear physics). --- Particles (Nuclear physics) --Flavor. --- Quantum flavor dynamics. --- Particles (Nuclear physics) --- Quantum flavor dynamics --- B mesons --- CP violation (Nuclear physics) --- Nuclear Physics --- Physics --- Physical Sciences & Mathematics --- Flavor --- Quarks. --- Flavor. --- Flavor (Nuclear physics) --- Flavor models (Nuclear physics) --- Top quark models --- Truth models (Nuclear physics) --- Physics. --- Nuclear physics. --- Elementary particles (Physics). --- Quantum field theory. --- Particle and Nuclear Physics. --- Elementary Particles, Quantum Field Theory. --- Relativistic quantum field theory --- Field theory (Physics) --- Quantum theory --- Relativity (Physics) --- Elementary particles (Physics) --- High energy physics --- Nuclear particles --- Nucleons --- Nuclear physics --- Atomic nuclei --- Atoms, Nuclei of --- Nucleus of the atom --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Partons --- Quark-gluon interactions --- Quarks --- Quantum theory. --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Mechanics --- Thermodynamics --- Charge conjugation parity violation --- Violation, Charge conjugation parity --- Symmetry (Physics) --- Beauty mesons --- Bottom mesons --- Mesons --- Dynamics, Quantum flavor --- Flavor dynamics, Quantum
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More than ten years after its discovery, still relatively little is known about the top quark, the heaviest known elementary particle. The present extensive survey summarizes and reviews top-quark physics based on the precision measurements at the Fermilab Tevatron Collider, as well as the sensitivity of these experiments to new physics. Finally, an outlook on top quark physics at the Large Hadron Collider is given.
Quarks. --- Hadron colliders. --- Particles (Nuclear physics) --- Flavor. --- Flavor (Nuclear physics) --- Flavor models (Nuclear physics) --- Top quark models --- Truth models (Nuclear physics) --- Quarks --- Colliders (Nuclear physics) --- Hadron facilities --- Partons --- Quark-gluon interactions --- Quantum theory. --- Atomic, Molecular, Optical and Plasma Physics. --- Elementary Particles, Quantum Field Theory. --- Measurement Science and Instrumentation. --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Physics --- Mechanics --- Thermodynamics --- Atoms. --- Physics. --- Elementary particles (Physics). --- Quantum field theory. --- Physical measurements. --- Measurement . --- Measuring --- Mensuration --- Mathematics --- Technology --- Metrology --- Physical measurements --- Measurements, Physical --- Mathematical physics --- Measurement --- Relativistic quantum field theory --- Field theory (Physics) --- Quantum theory --- Relativity (Physics) --- Elementary particles (Physics) --- High energy physics --- Nuclear particles --- Nucleons --- Nuclear physics --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Dynamics --- Chemistry, Physical and theoretical --- Matter --- Stereochemistry --- Constitution
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