Rotating Higher Spin Partition Functions and Extended BMS Symmetries
Abstract
We evaluate one-loop partition functions of higher-spin fields in thermal flat space with angular potentials; this computation is performed in arbitrary space-time dimension, and the result is a simple combination of Poincar\'e characters. We then focus on dimension three, showing that suitable products of one-loop partition functions coincide with vacuum characters of higher-spin asymptotic symmetry algebras at null infinity. These are extensions of the bms_3 algebra that emerges in pure gravity, and we propose a way to build their unitary representations and to compute the associated characters. We also extend our investigations to supergravity and to a class of gauge theories involving higher-spin fermionic fields.
Cite
@article{arxiv.1512.03353,
title = {Rotating Higher Spin Partition Functions and Extended BMS Symmetries},
author = {Andrea Campoleoni and Hernan A. Gonzalez and Blagoje Oblak and Max Riegler},
journal= {arXiv preprint arXiv:1512.03353},
year = {2016}
}
Comments
58 pages; clarifications and references added; version to be published in JHEP