Gravitational and Yang-Mills instantons in holographic RG flows
Abstract
We study various holographic RG flow solutions involving warped asymptotically locally Euclidean (ALE) spaces of type. A two-dimensional RG flow from a UV (2,0) CFT to a (4,0) CFT in the IR is found in the context of (1,0) six dimensional supergravity, interpolating between and geometries. We also find solutions involving non trivial gauge fields in the form of SU(2) Yang-Mills instantons on ALE spaces. Both flows are of vev type, driven by a vacuum expectation value of a marginal operator. RG flows in four dimensional field theories are studied in the type IIB and type I context. In type IIB theory, the flow interpolates between and geometries. The field theory interpretation is that of an N=2 quiver gauge theory flowing to N=4 SU(n) gauge theory. In type I theory the solution describes an RG flow from N=2 quiver gauge theory with a product gauge group to N=2 gauge theory in the IR, with gauge group . The corresponding geometries are and , respectively. We also explore more general RG flows, in which both the UV and IR CFTs are N=2 quiver gauge theories and the corresponding geometries are and . Finally, we discuss the matching between the geometric and field theoretic pictures of the flows.
Keywords
Cite
@article{arxiv.1107.3413,
title = {Gravitational and Yang-Mills instantons in holographic RG flows},
author = {Edi Gava and Parinya Karndumri and K. S. Narain},
journal= {arXiv preprint arXiv:1107.3413},
year = {2011}
}
Comments
32 pages, 3 figures, typoe corrected and a reference added