Trace and dilatation anomalies in gauge theories

John C. Collins, Anthony Duncan, and Satish D. Joglekar
Phys. Rev. D 16, 438 – Published 15 July 1977
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Abstract

The form of the anomaly in the trace of the energy-momentum tensor in a general theory of interacting fermions and non-Abelian gauge bosons is dervied. The result is shown to involve precisely those gaugevariant operatos which are known to mix with the naive trace under renormalization. The trace is shown to be soft on the mass shell if and only if the theory is at an eigenvalue of the Callan-Symanzik β function. The dilatation anomaly in the matrix element of θλλ with two electromagnetic currents (to lowest order in electromagnetism, but including all orders of the strong gauge interaction) is derived and shown to be infinitely renormalized in finite orders of strong perturbation theory. This anomaly is then shown to be canonical and given precisely by the lowest-order result provided the strong interactions are summed to all orders before going to the limit of physical space-time dimensions.

  • Received 1 November 1976

DOI:https://doi.org/10.1103/PhysRevD.16.438

©1977 American Physical Society

Authors & Affiliations

John C. Collins*

  • Joseph Henry Laboratories, Princeton University, Princeton, New Jersey 08540

Anthony Duncan

  • Institute for Advanced Study, Princeton, New Jersey 08540

Satish D. Joglekar

  • Institute for Advanced Study, Princeton, New Jersey 08540

  • *Work supported in part by NSF under Grant No. MPS 75-22514.
  • Research sponsored by the U. S. Energy Research and Development Administration under Grant No. E(11-1)-2220.

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Vol. 16, Iss. 2 — 15 July 1977

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