Relativistic Quantum Mechanics
Relativistic Quantum Mechanics
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DOI:
10.1142/9789814374231_0005
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发表时间:
2006-01
期刊:
影响因子:
--
通讯作者:
Moshe Gitterman
中科院分区:
文献类型:
--
作者:
Moshe Gitterman
Chapter summary 36 The aim of this chapter is to introduce a relativistic formalism which can be used to describe particles and their interactions. The emphasis is given to those elements of the formalism which can be carried on to Relativistic Quantum Fields (RQF), which underpins the theoretical framework of high energy particle physics. We begin with a brief summary of special relativity, concentrating on 4-vectors and spinors. One-particle states and their Lorentz transformations follow, leading to the Klein–Gordon and the Dirac equations for probability amplitudes; i.e. Relativistic Quantum Mechanics (RQM). Readers who want to get to RQM quickly, without studying its foundation in special relativity can skip the first sections and start reading from the section 1.3. Intrinsic problems of RQM are discussed and a region of applicability of RQM is defined. Free particle wave functions are constructed and particle interactions are described using their probability currents. A gauge symmetry is introduced to derive a particle interaction with a classical gauge field.