Brane-worlds and theta-vacua
Abstract
Reductions from odd to even dimensionalities ( or ), for which the effective low-energy theory contains chiral fermions, present us with a mismatch between ultraviolet and infrared anomalies. This applies to both local (gauge) and global currents; here we consider the latter case. We show that the mismatch can be explained by taking into account a change in the spectral asymmetry of the massive modes--an odd-dimensional analog of the phenomenon described by the Atiyah-Patodi-Singer theorem in even dimensionalities. The result has phenomenological implications: we present a scenario in which a QCD-like -angle relaxes to zero on a certain (possibly, cosmological) timescale, despite the absence of any light axion-like particle.
Keywords
Cite
@article{arxiv.hep-th/0412306,
title = {Brane-worlds and theta-vacua},
author = {S. Khlebnikov and M. Shaposhnikov},
journal= {arXiv preprint arXiv:hep-th/0412306},
year = {2009}
}
Comments
44 pages, 4 figures