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Ersatz gravity and black-hole thermodynamics from Manin gauge theory with noncompact gauge group

Published 5 Feb 2026 in hep-th, gr-qc, and math-ph | (2602.05180v1)

Abstract: We show that a three-dimensional Manin gauge theory with gauge group $\operatorname{SL}(2;\mathbb R)$ (i.e. Yang-Mills theory, the third-way theory, or the imaginary third-way theory) minimally coupled to Einstein gravity admits a dual interpretation as Einstein gravity with an exotic coupling to a Manin gauge theory, where the roles of dreibein/spin connection and field strength/gauge potential are interchanged. The dual, or ersatz, gravitational metric $\hat g_{μν}\sim\operatorname{tr}((\star F)μ(\star F)ν)$ is a classical double copy of the gauge field strength $F_{μν}$ (as opposed to the usual double copy of the gauge potential $A_μ$). If matter exclusively couples to $\hat g$ (for example, in a gravitational decoupling limit), then one can formulate black-hole thermodynamics with regards to the ersatz metric. In particular, a black-hole solution for the ersatz metric $\hat g_{μν}$ (made of Yang-Mills fields) radiates ersatz Hawking radiation and obeys the laws of black-hole thermodynamics.

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