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A blackboard in my office

John Wheater

Professor of Physics, Head of Particle Theory Group

Research theme

  • Fundamental particles and interactions
  • Fields, strings, and quantum dynamics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Particle theory
John.Wheater@physics.ox.ac.uk
Telephone: 01865 (2)73961
Rudolf Peierls Centre for Theoretical Physics, room 60.06
  • About
  • Research
  • Teaching
  • Publications

Symmetries in QFT

ArXiv hep-ph/0310065 (2003)

Authors:

KM Hamilton, JF Wheater

Abstract:

This document contains notes from the graduate lecture course, "Symmetries in QFT" given by J.F.Wheater at Oxford University in Hilary term. The course gives an informal introduction to QFT.

Polyakov Lines in Yang-Mills Matrix Models

ArXiv hep-th/0309026 (2003)

Authors:

Peter Austing, Graziano Vernizzi, John F Wheater

Abstract:

We study the Polyakov line in Yang-Mills matrix models, which include the IKKT model of IIB string theory. For the gauge group SU(2) we give the exact formulae in the form of integral representations which are convenient for finding the asymptotic behaviour. For the SU(N) bosonic models we prove upper bounds which decay as a power law at large momentum p. We argue that these capture the full asymptotic behaviour. We also indicate how to extend the results to some correlation functions of Polyakov lines.

Polyakov Lines in Yang-Mills Matrix Models

(2003)

Authors:

Peter Austing, Graziano Vernizzi, John F Wheater

Veneziano-Yankielowicz Superpotential Terms in N=1 SUSY Gauge Theories

ArXiv hep-th/0307176 (2003)

Authors:

Ben M Gripaios, John F Wheater

Abstract:

The Veneziano-Yankielowicz glueball superpotential for an arbitrary N=1 SUSY pure gauge theory with classical gauge group is derived using an approach following recent work of Dijkgraaf, Vafa and others. These non-perturbative terms, which had hitherto been included by hand in the above approach, are thus seen to arise naturally, and the approach is rendered self-contained. By minimising the glueball superpotential for theories with fundamental matter added, the expected vacuum structure with gaugino condensation and chiral symmetry breaking is obtained. Various possible extensions are also discussed.

Veneziano-Yankielowicz Superpotential Terms in N=1 SUSY Gauge Theories

(2003)

Authors:

Ben M Gripaios, John F Wheater

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