Higher-order chiral scalar from boundary reduction of 3d higher-spin gravity
Abstract
We use a recently proposed covariant procedure to reduce the Chern-Simons action of three-dimensional higher-spin gravity to the boundary, resulting in a Lorentz covariant action for higher-order chiral scalars. After gauge-fixing, we obtain a higher-derivative action generalizing the Floreanini-Jackiw and Alekseev-Shatashvili actions to arbitrary spin . For simplicity, we treat the case of general spin at the linearized level, while the full non-linear asymptotic boundary conditions are presented in component form for the case. Finally, we extend the spin-3 linearized analysis to a background with non-trivial higher-spin charge and show that it has a richer structure of zero modes.
Cite
@article{arxiv.2501.16463,
title = {Higher-order chiral scalar from boundary reduction of 3d higher-spin gravity},
author = {Calvin Yi-Ren Chen and Euihun Joung and Karapet Mkrtchyan and Junggi Yoon},
journal= {arXiv preprint arXiv:2501.16463},
year = {2025}
}
Comments
25 pages (incl. appendix and bibliography); v2: added references, made clarifications