Mass scales in string and M-theory
Abstract
I review the relations between mass scales in various string theories and in M-theory. I discuss physical motivations and possible consistent realizations of large volume compactifications and low string scale. Large longitudinal dimensions, seen by Standard Model particles, imply in general that string theory is strongly coupled unless its tension is close to the compactification scale. Weakly coupled, low-scale strings can in turn be realized only in the presence of extra large transverse dimensions, seen through gravitational interactions, or in the presence of infinitesimal string coupling. In the former case, quantum gravity scale is also low, while in the latter, gravitational and string interactions remain suppressed by the four-dimensional Planck mass. There is one exception in this general rule, allowing for large longitudinal dimensions without low string scale, when Standard Model is embedded in a six-dimensional fixed-point theory described by a tensionless string. Extra dimensions of size as large as TeV cm are motivated from the problem of supersymmetry breaking in string theory, while TeV scale strings offer a solution to the gauge hierarchy problem, as an alternative to softly broken supersymmetry or technicolor. I discuss these problems in the context of the above mentioned string realizations, as well as the main physical implications both in particle accelerators and in experiments that measure gravity at sub-millimeter distances.
Cite
@article{arxiv.hep-th/9909212,
title = {Mass scales in string and M-theory},
author = {I. Antoniadis},
journal= {arXiv preprint arXiv:hep-th/9909212},
year = {2007}
}
Comments
32 pages, LaTeX, 2 eps-figures, uses sprocl.sty Lectures given at the Trieste Spring Workshop, ICTP, Italy, 22-30 March 1999, and at the Advanced School on "Supersymmetry in the Theories of Fields, Strings and Branes", Sandiago de Compostela, Spain, 26-31 July 1999. A short version was given as an invited talk at Strings 99, Potsdam, Germany, 19-24 July 1999 and at the European Program meeting on "Quantum Aspects of Gauge Theories, Supersymmetry and Unification", Paris, France, 1-7 September 1999