THE PERTURBATION EXPANSION OF THE QUANTIZED COMPOSITE FIELD THEORY AND GAUGE INVARIANCE

  • In this paper we introduce the concept of "same order" in the perturbution expansion of the quatized composite field theory which is different from single particle theory. For example, in the case of Q. E. D., "same order" is defined by means of a coupling constant, but here it closely relates the operators occuring in the B. S. equations. Feymann graphs of the "same order" are defined for different kinds of transitions in the composite field theory. Finally, we prove that guage invariance is a natural result as long as all "same order" Feymann graphs are calculated for an electromagnetic transition between composite particles.
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  • [1] 何柞麻、张荣西、黄涛,物理学报,25 (1976), 215.[2] J. D. Bjorken, S. D. Drell, 《Relatirittic Quantum Fields》.[3] 可参看H. H.波戈留波夫,八.B.希尔科夫,《量场论导引》.[4] G. 't Hooft, M. T. Veltman, Nucl. Phys., 44B (1973) 189.[5] 何柞麻、张旅西,物理学报. 26 (1977), 540.
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CHANG CHAO-SHIE and HO TSU-HSIU. THE PERTURBATION EXPANSION OF THE QUANTIZED COMPOSITE FIELD THEORY AND GAUGE INVARIANCE[J]. Chinese Physics C, 1978, 2(2): 119-130.
CHANG CHAO-SHIE and HO TSU-HSIU. THE PERTURBATION EXPANSION OF THE QUANTIZED COMPOSITE FIELD THEORY AND GAUGE INVARIANCE[J]. Chinese Physics C, 1978, 2(2): 119-130. shu
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Received: 1977-09-29
Revised: 1900-01-01
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THE PERTURBATION EXPANSION OF THE QUANTIZED COMPOSITE FIELD THEORY AND GAUGE INVARIANCE

Abstract: In this paper we introduce the concept of "same order" in the perturbution expansion of the quatized composite field theory which is different from single particle theory. For example, in the case of Q. E. D., "same order" is defined by means of a coupling constant, but here it closely relates the operators occuring in the B. S. equations. Feymann graphs of the "same order" are defined for different kinds of transitions in the composite field theory. Finally, we prove that guage invariance is a natural result as long as all "same order" Feymann graphs are calculated for an electromagnetic transition between composite particles.

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