Geometric models of matter

Author:

Atiyah M. F.1,Manton N. S.2,Schroers B. J.3

Affiliation:

1. School of Mathematics, University of Edinburgh, King's Buildings, Edinburgh EH9 3JZ, UK

2. DAMTP, Centre for Mathematical Sciences, University of Cambridge, Wilberforce Road, Cambridge CB3 0WA, UK

3. Department of Mathematics, Heriot–Watt University, Riccarton, Edinburgh EH14 4AS, UK

Abstract

Inspired by soliton models, we propose a description of static particles in terms of Riemannian 4-manifolds with self-dual Weyl tensor. For electrically charged particles, the 4-manifolds are non-compact and asymptotically fibred by circles over physical 3-space. This is akin to the Kaluza–Klein description of electromagnetism, except that we exchange the roles of magnetic and electric fields, and only assume the bundle structure asymptotically, away from the core of the particle in question. We identify the Chern class of the circle bundle at infinity with minus the electric charge and, at least provisionally, the signature of the 4-manifold with the baryon number. Electrically neutral particles are described by compact 4-manifolds. We illustrate our approach by studying the Taub–Newman, Unti, Tamburino (Taub–NUT) manifold as a model for the electron, the Atiyah–Hitchin manifold as a model for the proton, with the Fubini–Study metric as a model for the neutron and S 4 with its standard metric as a model for the neutrino.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference36 articles.

1. The Geometry and Dynamics of Magnetic Monopoles

2. Atiyah M. F.& LeBrun C.. In preparation The signature of 4-manifolds with conical singular metric.

3. Skyrmions from instantons

4. Geometry and kinematics of two Skyrmions

5. The Index of Elliptic Operators: III

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