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Boundary dynamics of asymptotically flat 3D gravity coupled to higher spin fields

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arxiv 1403.4898 v2 pith:LUBMO72N submitted 2014-03-19 hep-th gr-qc

Boundary dynamics of asymptotically flat 3D gravity coupled to higher spin fields

classification hep-th gr-qc
keywords boundaryactionflattheoryasymptoticallyconditionsmathbbmodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We construct a two-dimensional action principle invariant under a spin-three extension of BMS$_3$ group. Such a theory is obtained through a reduction of Chern-Simons action with a boundary. This procedure is carried out by imposing a set of boundary conditions obtained from asymptotically flat spacetimes in three dimensions. When implementing part of this set, we obtain an analog of chiral WZW model based on a contraction of $sl(3,\mathbb{R}) \times sl(3,\mathbb{R})$. The remaining part of the boundary conditions imposes constraints on the conserved currents of the model, which allows to further reduce the action principle. It is shown that a sector of this latter theory is related to a flat limit of Toda theory.

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  1. BMS$_3$ invariant field theories

    hep-th 2026-07 accept novelty 6.0

    New BMS3-invariant 2D scalar theories (electric, magnetic, canonical, coupled) with boundary analysis, flux laws, monodromy matching to 3D gravity, and complementary AdS3/dS3 flat limits.