Higher-spin charges and the LΛ w1 + ∞ algebra in (A)dS4
Lorenzo Di Giacomo, Maitá Micol, Daniele Pranzetti, Ana-Maria Raclariu
Abstract
We consider (3+1)-dimensional asymptotically locally (anti-)de Sitter ((A)dS4) spacetimes with boundary conditions allowing for gravitational flux. We construct an infinite tower of higher-spin charges as perturbative solutions in the cosmological constant Λ to a hierarchy of evolution equations resulting from an asymptotic expansion of the Einstein equations. We show that these charges canonically realize the Λ-deformed w1+∞ algebra (LΛ w1+∞) on a restricted gravitational phase space, thereby extending the higher-spin symmetry structure of asymptotically flat spacetimes to asymptotically (A)dS spacetimes. We further construct the curved-space counterparts of conformally soft gravitons directly in terms of spacetime data. We show that they are primaries with respect to an sl(2,R) subalgebra of the (A)dS4 isometry algebra and that their Poisson brackets with the quadratic higher-spin charges reproduce the Λ-deformed celestial operator product expansion proposed by Taylor and Zhu. Our results establish the bulk gravitational origin of the LΛw1+∞ symmetry and extend the celestial bulk-boundary dictionary to asymptotically (A)dS4 gravity.
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