ABSTRACT

Written by world-leading experts in particle physics, this new book from Luciano Maiani and Omar Benhar, with contributions from the late Nicola Cabibbo, is based on Feynman’s path integral formulation of quantum field theory. Key elements of gauge theories are described—Feynman diagrams, gauge-fixing, Faddeev-Popov ghosts—as well as renormalisation in Quantum Electrodynamics. Quarks and QCD interactions are introduced. Renormalisation group and high-momentum behaviour of the coupling constants are discussed in both QED and QCD, with asymptotic freedom derived at one-loop. These concepts are related to the Higgs boson mass and models of grand unification. The new edition has been updated throughout, with two new chapters presenting an outline of Lattice QCD field theory and the renormalisation group analysis of the prominent ΔI = 1/2 rule in kaon decay. The most recent Lattice QCD results on the light quark mass spectrum and on a quantitative justification of the ΔI = 1/2 rule are also discussed. The Chapter on the anomalous magnetic moment of the muon now includes an update on the Lattice QCD determination of the hadronic vacuum polarisation contribution, which turns out to be in good agreement with the most recent experimental determination of the muon g-2.

Key Features:

  • Contains renormalisation of QED with examples worked out in full detail alongside original derivations of Ward identities
  • Discusses applications including the calculation of the β functions of QED and QCD and the electro-weak muon anomaly
  • Explores fundamental constants at very high energy to introduce to theories of grand unification, the unnaturalness of scalar fields and the motivations for new physics beyond the Standard Theory

chapter Chapter 1|3 pages

Introduction

Title
Size: 0.16 MB

chapter Chapter 2|9 pages

The Feynman Path Integral

Title
Size: 0.26 MB

chapter Chapter 3|16 pages

Towards a Field Theory

Title
Size: 0.35 MB

chapter Chapter 4|15 pages

Equations of Motion, Symmetries and Ward's Identity

Title
Size: 0.35 MB

chapter Chapter 5|9 pages

The Electromagnetic Field

Title
Size: 0.28 MB

chapter Chapter 6|14 pages

Fermion Fields

Title
Size: 0.31 MB

chapter Chapter 7|11 pages

Scattering Processes and the S-Matrix

Title
Size: 0.28 MB

chapter Chapter 8|15 pages

Perturbative Green's Functions in λ ϕ 4

Title
Size: 0.57 MB

chapter Chapter 9|4 pages

S-Matrix Feynman Diagrams in λ ϕ 4

Title
Size: 0.24 MB

chapter Chapter 10|13 pages

Quantum Electrodynamics

Title
Size: 0.31 MB

chapter Chapter 11|13 pages

Renormalisation of QED

Title
Size: 0.41 MB

chapter Chapter 12|16 pages

Applications of QED

Title
Size: 0.35 MB

chapter Chapter 13|7 pages

Renormalisation Group of QED

Title
Size: 0.35 MB

chapter Chapter 14|10 pages

Quantising a Non-Abelian Theory

Title
Size: 0.30 MB

chapter Chapter 15|10 pages

Unitarity and Ghosts

Title
Size: 0.39 MB

chapter Chapter 16|11 pages

The β Function in QCD

Title
Size: 0.48 MB

chapter Chapter 17|7 pages

Lattice QCD

Title
Size: 0.40 MB

chapter Chapter 18|14 pages

The Δ I = 1 / 2 Rule in Strange Particles Non-Leptonic Decays

Title
Size: 0.84 MB

chapter Chapter 19|10 pages

The Weak Muon Anomaly

Title
Size: 0.32 MB
Size: 0.44 MB

chapter Chapter 21|7 pages

Limits on the Mass of The Higgs Boson

Title
Size: 0.44 MB

chapter Chapter 22|14 pages

Effective Potential and Naturalness

Title
Size: 0.34 MB