The Exact Renormalization Group and Higher-spin Holography
Abstract
In this paper, we revisit scalar field theories in space-time dimensions possessing global symmetry. Following our recent work arXiv:1402.1430v2, we consider the generating function of correlation functions of all -invariant, single-trace operators at the free fixed point. The exact renormalization group equations are cast as Hamilton equations of radial evolution in a model space-time of one higher dimension, in this case . The geometry associated with the RG equations is seen to emerge naturally out of the infinite jet bundle corresponding to the field theory, and suggests their interpretation as higher-spin equations of motion. While the higher-spin equations we obtain are remarkably simple, they are non-local in an essential way. Nevertheless, solving these bulk equations of motion in terms of a boundary source, we derive the on-shell action and demonstrate that it correctly encodes all of the correlation functions of the field theory, written as `Witten diagrams'. Since the model space-time has the isometries of the fixed point, it is possible to construct new higher spin theories defined in terms of geometric structures over other model space-times. We illustrate this by explicitly constructing the higher spin RG equations corresponding to the non-relativistic free field theory in spatial dimensions. In this case, the model space-time is the Schr\"odinger space-time, .
Cite
@article{arxiv.1407.4574,
title = {The Exact Renormalization Group and Higher-spin Holography},
author = {Robert G. Leigh and Onkar Parrikar and Alexander B. Weiss},
journal= {arXiv preprint arXiv:1407.4574},
year = {2015}
}
Comments
37 pages, 3 figures; v2: Typos fixed, added discussion about boundary conditions