Rotating higher spin partition functions and extended BMS symmetries

被引:0
作者
A. Campoleoni
H. A. Gonzalez
B. Oblak
M. Riegler
机构
[1] Université Libre de Bruxelles and International Solvay Institutes,DAMTP, Centre for Mathematical Sciences
[2] University of Cambridge,Institute for Theoretical Physics
[3] Vienna University of Technology,undefined
来源
Journal of High Energy Physics | / 2016卷
关键词
Field Theories in Higher Dimensions; Field Theories in Lower Dimensions; Higher Spin Gravity; Higher Spin Symmetry;
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摘要
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 Poincaré 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 bms3 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.
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