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Titlebook: Quantum Electrodynamics; Walter Greiner,Joachim Reinhardt Textbook 20033rd edition Springer-Verlag Berlin Heidelberg 2003 Boson.electrodyn

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Walter Greiner,Joachim Reinhardtcceed in it. Findings emerging from this qualitative inquiry suggest that the participants are reasonably aware of what global competence entails. Moreover, they think it should be everyone’s task to nurture global citizens, but admittedly, they have an easier task as foreign language teachers as op
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The Propagators for Electrons and Positrons,ing to (1.28), the probability amplitude consists of factors that describe the propagation of the particle between the particular scattering events (caused by the interaction .(.)) and when integrated over the space-time coordinates of the points of interaction represent the .th-order scattering process of the particle.
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Two-Particle Systems,er than the other the problem can be considerably simplified: one solves the Dirac equation for the light particle with an additional external potential, which is produced by the heavier particle. Because of the large mass ratio the influence of the lighter particle on the heavier one can be neglected.
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Quantum Electrodynamics of Spinless Bosons,case is scalar (or pseudoscalar) bosons, which have spin O. In the following we want to develop the theory of the electromagnetic interaction of these particles, which is also known as “scalar electrodynamics”. We can take over many ingredients of the theory from Chapters 2 and 3 either directly or with only marginal modifications.
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Propagators and Scattering Theory,s the quantum field theory of electrons and positrons (the electron-positron field) and photons (the electromagnetic or radiation field). The theory also applies to the known heavy leptons (μ and τ) and, in general, can be used to describe the electromagnetic interaction of other charged elementary
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The Propagators for Electrons and Positrons,d positrons. We will be guided by the picture of the nonrelativistic theory where the propagator ..(.; .) is interpreted as the .. This amplitude can be decomposed as in (1.28) into a sum of partial amplitudes, the .th such partial amplitude being a product of factors illustrated in Fig. 2.1. Accord
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