量子場(chǎng)論 第2版
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量子場(chǎng)論 第2版 版權(quán)信息
- ISBN:750626644X
- 條形碼:9787506266444 ; 978-7-5062-6644-4
- 裝幀:簡(jiǎn)裝本
- 冊(cè)數(shù):暫無(wú)
- 重量:暫無(wú)
- 所屬分類:>>
量子場(chǎng)論 第2版 本書特色
This book is a modern pedagogic introduction to the ideas and techniques of quantum field theory.
After a brief overview of particle physics and a survey of relativistic wave equations and Lagrangian methods,the quantum theory of scalar and spinor fields, and then of gauge fields,is developed The emphasis throughout is on functional methods,which have played a large part in modern field theory. The book concludes with a brief survey of `topological' objects in field theory and,new to this edition,a chapter devoted to supersymmetry.
此書為英文版!
量子場(chǎng)論 第2版 內(nèi)容簡(jiǎn)介
本書是一本非常好的量子場(chǎng)論的入門書,雖然作者本是為不了解量子場(chǎng)論知識(shí)的基本粒子物理學(xué)專業(yè)的學(xué)生撰寫的,但理論物理學(xué)領(lǐng)域的高年級(jí)大學(xué)生和低年級(jí)研究生都是能夠閱讀的。書中給出了量子場(chǎng)論的概念和方法的*新介紹,1985年第1版出版后,受到了大家的好評(píng),這第2版在初版的基礎(chǔ)上作了補(bǔ)充,增加了“超對(duì)稱”一章。
量子場(chǎng)論 第2版 目錄
Preface to the second edition
1 Intropduction:synosis of particle physics
1.1 Quantum field theory
1.2 Gravitation
1.3 Strong interactions
1.4 Weak interactions
1.5 Leptonic quantum numbers
1.6 Hadronic quantum numbers
1.7 Resonances
1.8 The quark model
1.9 SU(2),SU(3)SU(4)…
1.10 Dynamical evidence for quarks
1.11 Colour
1.12 QCD
1.13 Weak interactions
Guide to further reading
2 Single-particle relativistic wave equations
2.1 Rel;ativistic notation
2.2 Klein-Gordon equation
2.3 Dirac equation
SU(2)and the rotaion group
SL(2,C)and the antiparticles
2.4 Prdiciton of antiparticles
2.5 Construction of Dirac spinors:algebra of γ matrices
2.6 Non-relativistic limit and the electron magnetic moment
2.7 The relevance of the Pointcare group operators and the zero mass limit
2.8 Maxwell and Proca equations
2.9 Maxwell's equations and differential geometry
Summary
Guide to further reading
3 Lagrangian formulation,symmetries and gauge fields
4 Canonical quantisation and particle interpretation
5 Path integrals and quantum mechanics
6 Path-integral quantisation and Feynman rules:scalar and spinor fields
7 Path-imtegral quantisation:gauge fields
8 Spontaneous symmetry breaking and the Weinberg-Salam model
9 Renormalisation
10 Toplogical objects in field theory
References
Index
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