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Quarks. --- Particles (Nuclear physics) --- Partons --- Quark-gluon interactions
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The Lund model, inspired by quantum chromodynamics, has provided a promising approach to the dynamics of quark and gluon interactions. Starting with a brief reprise of basic concepts in relativity, quantum mechanics of fields and particle physics, this book discusses: the dynamics of the massless relativistic string; confinement; causality and relativistic covariance; Lund fragmentation processes; QED and QCD Bremsstrahlung; multiplicities and particle-parton distributions. Throughout the book, theory is confronted with current experimental data, and implications for future experiments are also considered. The book also explores the relationships between the Lund model and other models based on field theory (the Schwinger model, S-matrix models, light-cone algebra physics and variations of the parton model), and models based on statistical mechanics (the Feynman-Wilson gas, scaling, iterative cascade models). This title, first published in 1998, has been reissued as an Open Access publication on Cambridge Core.
Nuclear physics. --- Quark-gluon interactions --- Particles (Nuclear physics) --- Mathematical models.
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The Lund model, inspired by quantum chromodynamics, has provided a very promising approach to the dynamics of quark and gluon interactions. Starting with a brief reprise of basic concepts in relativity, quantum mechanics of fields and particle physics, this 1998 book discusses: the dynamics of the massless relativistic string; confinement; causality and relativistic covariance; Lund fragmentation processes; QED and QCD Bremsstrahlung; multiplicities and particle-parton distributions. Throughout the book, theory is confronted with current experimental data, and implications for future experiments are also considered. The book also explores the relationships between the Lund model and other models based on field theory (the Schwinger model, S-matrix models, light-cone algebra physics and variations of the parton model), and models based on statistical mechanics (the Feynman-Wilson gas, scaling, iterative cascade models).
Particles (Nuclear physics) --- Quark-gluon interactions --- Mathematical models.
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This volume is a unique report on the frontiers of subnuclear physics presented by global specialists in a clear and rigorous style. The question of Lattice QCD is presented by R D Kenway, and that of Quark-Gluon Plasma Physics by F Karsch. Quantum Field theory is discussed by R G Dijkgraff, and the status of Local Supersymmetry by M J Duff. Detailed analysis of Supersymmetry in Nuclei is made by F Iachello, and that of Inflation, Dark Matter and Dark Energy by E W Kolb. Compactified dimensions are outlined by I Antoniadis, Horizons in the quantization of the gravitational force by Nobel Laure
Particles (Nuclear physics) --- Gauge fields (Physics) --- Supersymmetry --- Quarks --- Gluons --- Quark-gluon interactions
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V N Gribov, one of the founders of modern particle physics, shaped our understanding of QCD as the microscopic dynamics of hadrons. This volume collects his papers on quark confinement, showing the road he followed to arrive at the theory and formulating the theory itself. It begins with papers providing a beautiful physical explanation of asymptotic freedom based on the phenomenon of antiscreening and demonstrating the inconsistency of the standard perturbative treatment of the gluon fields (Gribov copies, Gribov horizon). It continues with papers presenting the Gribov theory according to wh
Quark confinement. --- Quarks. --- Particles (Nuclear physics) --- Partons --- Quark-gluon interactions --- Confinement of quarks --- Quarks
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"Today it is known that the atomic nuclei are composed of smaller constituents, the quarks. A quark is always bound with two other quarks, forming a baryon or with an antiquark, forming a meson. The quark model was first postulated in 1964 by Murray Gell-Mann -- who coined the name "quark" from James Joyce's novel Finnegans Wake -- and by George Zweig, who then worked at CERN. In the present theory of strong interactions -- Quantum Chromodynamics proposed by H Fritzsch and Gell-Mann in 1972 -- the forces that bind the quarks together are due to the exchange of eight gluons. On the 50th anniversary of the quark model, this invaluable volume looks back at the developments and achievements in the elementary particle physics that eventuated from that beautiful model. Written by an international team of distinguished physicists, each of whom have made major developments in the field, the volume provides an essential overview of the present state to the academics and researchers.--
Quarks. --- Quarks --- Particles (Nuclear physics) --- Partons --- Quark-gluon interactions --- Mathematical models.
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From August 29 to September 7, 2006, a large group of distinguished lecturers and young physicists coming from various countries around the world met in Erice, Italy, at the Ettore Majorana Foundation and Centre for Scientific Culture (EMFCSC) for the 44th course of the International School of Subnuclear Physics: "The Logic of Nature, Complexity and New Physics: From Quark-Gluon Plasma to Superstrings, Quantum Gravity and Beyond".This book is a collection of lectures given during the course, covering the most recent advances in theoretical physics and the latest results from current experiment
Quarks --- Gluons --- Quantum gravity --- Superstring theories --- Particles (Nuclear physics) --- Quark-gluon interactions
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The book "Leptons and Quarks" was first published in the early 1980s, when the program of the experimental search for the intermediate bosons W and Z and Higgs boson H was formulated. The aim and scope of the present extended edition of the book, written after the experimental discovery of the Higgs boson in 2012, is to reflect the various stages of this 30+ years search. Along with the text of the first edition of "Leptons and Quarks" it contains extracts from a number of books published by the World Scientific and an article from "On the concepts of vacuum and mass and the search for higgs"
Leptons (Nuclear physics) --- Quarks. --- Weak interactions (Nuclear physics) --- Nuclear reactions --- Particles (Nuclear physics) --- Partons --- Quark-gluon interactions --- Fermions
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At a fundamental level, the interaction of quarks with gluon fields lies at the heart of our understanding of the strong nuclear force. Experimentally, however, we only observe physical hadrons such as protons and pions. This book explores the fascinating physics involved in the path between these contrasting pictures of the world. Along the way, the book discusses symmetries, which play a crucial role in understanding the parameters of the theory, and details of the spectrum of physical particles".
Particles (Nuclear physics) --- Quark-gluon interactions. --- Quark confinement. --- Chiralité (physique nucléaire) --- Interactions quark-gluon. --- Quarks --- Chirality. --- Confinement --- Confinement.
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Particles (Nuclear physics) --- Quarks. --- Flavor. --- Quarks --- Flavor (Nuclear physics) --- Flavor models (Nuclear physics) --- Top quark models --- Truth models (Nuclear physics) --- Flavor --- Partons --- Quark-gluon interactions
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