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Quantum Field Theory
F+AIE 2018 . 2019 - 2º semestre
syllabus and bibliography Lagrangean densities, symmetries and conservation laws.
Klein-Gordon and Dirac fields: second quantisation; commutation and anti commutation relations between creation and annihilation operators. Propagators. Quantisation of the electromagnetic field. S-matrix formalism. Feynman diagrams and their rules in QED (Quantum Electrodynamics). Regularisation methods. Bibliography of reference -Michael Peskin, Daniel Schroeder, An Introduction to Quantum Field Theory, Westview Press
-J. Bjorken, S. Drell, Relativistic Quantum Fields, McGraw-Hill -Eef van Beveren, Some notes on Field Theory. -R. J. Rivers, Path integral methods in quantum field theory, Cambridge University Press, 1987. -Ta-Pei Cheng and Ling-Fong Li, Gauge theory of elementary particles, Clarendon Press, 1984. -C. D. Roberts and A. G. Williams, Dyson-Schwinger equations and their application to hadronic physics, Prog. Part. Nucl. Phys. 33, 477 (1994). -C. D. Roberts, Hadron Properties and Dyson-Schwinger Equations, Prog. Part. Nucl. Phys. 61, 50 (2008). -M. S. Bhagwat, A. Hoell, A. Krassnigg, C. D. Roberts and S. V. Wright, Schwinger functions and light-quark bound states, Few Body Syst. 40, 209 (2007). -A. Krassnigg, C. D. Roberts and S. V. Wright, Meson spectroscopy and properties using Dyson-Schwinger equations, Int. J. Mod. Phys. A22, 424 (2007).
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