Self-Dual Strings and N=2 Supersymmetric Field Theory
Abstract
We show how the Riemann surface of Yang-Mills field theory arises in type II string compactifications on Calabi-Yau threefolds. The relevant local geometry is given by fibrations of ALE spaces. The -branes that give rise to BPS multiplets in the string descend to self-dual strings on the Riemann surface, with tension determined by a canonically fixed Seiberg-Witten differential . This gives, effectively, a dual formulation of Yang-Mills theory in which gauge bosons and monopoles are treated on equal footing, and represents the rigid analog of type II-heterotic string duality. The existence of BPS states is essentially reduced to a geodesic problem on the Riemann surface with metric . This allows us, in particular, to easily determine the spectrum of {\it stable} BPS states in field theory. Moreover, we identify the six-dimensional space as the world-volume of a five-brane and show that BPS states correspond to two-branes ending on this five-brane.
Cite
@article{arxiv.hep-th/9604034,
title = {Self-Dual Strings and N=2 Supersymmetric Field Theory},
author = {A. Klemm and W. Lerche and P. Mayr and C. Vafa and N. Warner},
journal= {arXiv preprint arXiv:hep-th/9604034},
year = {2014}
}
Comments
harvmac, 22p, uses epsf, with 3 .eps figures (references added plus other minor corrections)