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Lattice Quantum Chromodynamics: Practical Essentials: SpringerBriefs in Physics

Autor Francesco Knechtli, Michael Günther, Michael Peardon
en Limba Engleză Paperback – 2 noi 2016
This book provides an overview of the techniques central to lattice quantum chromodynamics, including modern developments. 
The book has four chapters. The first chapter explains the formulation of quarks and gluons on a Euclidean lattice. The second chapter introduces Monte Carlo methods and details the numerical algorithms to simulate lattice gauge fields. Chapter three explains the mathematical and numerical techniques needed to study quark fields and the computation of quark propagators. The fourth chapter is devoted to the physical observables constructed from lattice fields and explains how to measure them in simulations. The book is aimed at enabling graduate students who are new to the field to carry out explicitly the first steps and prepare them for research in lattice QCD.
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Specificații

ISBN-13: 9789402409970
ISBN-10: 9402409971
Pagini: 153
Ilustrații: XIII, 140 p. 12 illus., 1 illus. in color.
Dimensiuni: 155 x 235 x 15 mm
Greutate: 0.23 kg
Ediția:1st ed. 2017
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria SpringerBriefs in Physics

Locul publicării:Dordrecht, Netherlands

Cuprins

Quantum Field Theory (QFT) on the Lattice.- A brief history of quarks and gluons.- Classical fields and gauge invariance.- Hamiltonian and path integral formulations of quantum mechanics.- Quantum fields on a lattice.- Recovering continuum QCD.- Further reading.- Monte Carlo methods.- Markov chain Monte Carlo.- Sampling Yang–Mills gauge fields.- Hybrid Monte Carlo.- Symplectic integration schemes.- Summary and Further reading.- Handling fermions on the lattice.- Wick contractions.- Sparse Linear Algebra.- Fermion determinant.- HMC with fermions revisited.- The quark propagator from a point source.- All-to-all quark propagators.- Summary and Further reading.- Calculating observables of quantum fields.- Symmetry properties of creation and annihilation operators.- Techniques for hadron spectroscopy.- Gluons, Wilson Loops and glueballs.- Quarks and hadron physics.- Statistical data analysis.- Summary.- A Notational conventions.- A.1 SU(N) notation.- A.2 Fermions.- A.3 Probability spaces.-References.

Caracteristici

Provides the essentials to be able to give independent contributions to the field of lattice gauge theory Defines a "common language" between physicists, mathematicians and computer scientists Includes supplementary material: sn.pub/extras