Duality without Supersymmetry: The Case of the SO(16)xSO(16) String
Abstract
We extend strong/weak coupling duality to string theories without spacetime supersymmetry, and focus on the case of the unique ten-dimensional, nonsupersymmetric, tachyon-free heterotic string. We construct a tachyon-free heterotic string model that interpolates smoothly between this string and the ten-dimensional supersymmetric heterotic string, and we construct a dual for this interpolating model. We find that the perturbative massless states of our dual theories precisely match within a certain range of the interpolation. Further evidence for this proposed duality comes from a calculation of the one-loop cosmological constant in both theories, as well as the presence of a soliton in the dual theory. This is therefore the first known duality relation between nonsupersymmetric tachyon-free string theories. Using this duality, we then investigate the perturbative and nonperturbative stability of the string, and present a conjecture concerning its ultimate fate.
Keywords
Cite
@article{arxiv.hep-th/9707148,
title = {Duality without Supersymmetry: The Case of the SO(16)xSO(16) String},
author = {Julie D. Blum and Keith R. Dienes},
journal= {arXiv preprint arXiv:hep-th/9707148},
year = {2009}
}
Comments
15 pages, LaTeX, 3 figures