Published July 1992 | Version v1
Journal article

Energy momentum tensor in theories with scalar field

  • 1. Indian Inst. of Tech., Kanpur (India). Dept. of Physics

Description

The renormalization of energy momentum tensor in theories with scalar fields and two coupling constants is considered. The need for addition of an improvement term is shown. Two possible forms for the improvement term are: (i) One in which the improvement coefficient is a finite function of bare parameters of the theory (so that the energy-momentum tensor can be derived from an action that is a finite function of bare quantities), (ii) One in which the improvement coefficient is a finite quantity, i.e. finite function of the renormalized quantities are considered. Four possible model of such theories are (i) Scalar Q.E.D. (ii) Non-Abelian theory with scalars, (iii) Yukawa theory, (iv) A model with two scalars. In all these theories a negative conclusion is established: neither forms for the improvement terms lead to a finite energy momentum tensor. Physically this means that when interaction with external gravity is incorporated in such a model, additional experimental input in the form of root mean square mass radius must be given to specify the theory completely, and the flat space parameters are insufficient. (author). 12 refs

Additional details

Publishing Information

Journal Title
Indian Journal of Physics. Part A
Journal Volume
66
Journal Issue
4
Journal Page Range
p. 517-521.
ISSN
0252-9262
CODEN
INJADP