From special relativity to Feynman d...
D'Auria, Riccardo.

 

  • From special relativity to Feynman diagrams[electronic resource] :a course in theoretical particle physics for beginners /
  • 紀錄類型: 書目-語言資料,印刷品 : Monograph/item
    杜威分類號: 539.72
    書名/作者: From special relativity to Feynman diagrams : a course in theoretical particle physics for beginners // by Riccardo D'Auria, Mario Trigiante.
    作者: D'Auria, Riccardo.
    其他作者: Trigiante, Mario.
    出版者: Cham : : Springer International Publishing :, 2016.
    面頁冊數: xvi, 601 p. : : ill., digital ;; 24 cm.
    Contained By: Springer eBooks
    標題: Physics.
    標題: Gravitation.
    標題: Quantum theory.
    標題: Cosmology.
    標題: Particles (Nuclear physics)
    標題: Quantum field theory.
    標題: Elementary Particles, Quantum Field Theory.
    標題: Classical and Quantum Gravitation, Relativity Theory.
    標題: Quantum Physics.
    ISBN: 9783319220147
    ISBN: 9783319220130
    內容註: Special Relativity -- Relativistic Dynamics -- The Equivalence Principle -- The Poincare Group -- Maxwell Equations and Special Relativity -- Quantization of the Electromagnetic Field -- Group Representations and Lie Algebras -- Lagrangian and Hamiltonian Formalism -- Quantum Mechanics Formalism -- Relativistic Wave Equations -- Quantization of Boson and Fermion Fields -- Fields in Interaction.
    摘要、提要註: This book, now in its second edition, provides an introductory course on theoretical particle physics with the aim of filling the gap that exists between basic courses of classical and quantum mechanics and advanced courses of (relativistic) quantum mechanics and field theory. After a concise but comprehensive introduction to special relativity, key aspects of relativistic dynamics are covered and some elementary concepts of general relativity introduced. Basics of the theory of groups and Lie algebras are explained, with discussion of the group of rotations and the Lorentz and Poincare groups. In addition, a concise account of representation theory and of tensor calculus is provided. Quantization of the electromagnetic field in the radiation range is fully discussed. The essentials of the Lagrangian and Hamiltonian formalisms are reviewed, proceeding from systems with a finite number of degrees of freedom and extending the discussion to fields. The final four chapters are devoted to development of the quantum field theory, ultimately introducing the graphical description of interaction processes by means of Feynman diagrams. The book will be of value for students seeking to understand the main concepts that form the basis of contemporary theoretical particle physics and also for engineers and lecturers. An Appendix on some special relativity effects is added.
    電子資源: http://dx.doi.org/10.1007/978-3-319-22014-7
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