English

The Origin of Space-Time as $W$ Symmetry Breaking in String Theory

High Energy Physics - Theory 2009-09-11 v1

Abstract

Physics in the neighbourhood of a space-time metric singularity is described by a world-sheet topological gauge field theory which can be represented as a twisted N=2N=2 superconformal Wess-Zumino model with a W1+W1+W_{1+\infty} \otimes W_{1+\infty} bosonic symmetry. The measurable WW-hair associated with the singularity is associated with Wilson loop integrals around gauge defects. The breaking of W1+W_{1+\infty} \otimes W1+W_{1+\infty} \rightarrow W1+W_{1+\infty} is associated with expectation values for open Wilson lines that make the metric non-singular away from the singularity. This symmetry breaking is accompanied by massless discrete `tachyon' states that appear as leg poles in SS-matrix elements. The triviality of the SS-matrix in the high-energy limit of the c=1c=1 string model, after renormalisation by the leg pole factors, is due to the restoration of double WW-symmetry at the singularity.

Keywords

Cite

@article{arxiv.hep-th/9205107,
  title  = {The Origin of Space-Time as $W$ Symmetry Breaking in String Theory},
  author = {John Ellis and N. E. Mavromatos and D. V. Nanopoulos},
  journal= {arXiv preprint arXiv:hep-th/9205107},
  year   = {2009}
}

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13 pages