A worldline path integral model for higher-spin gravity in AdS4 is constructed using twistor actions and double-line vertices, reproducing boundary correlators of free boson and fermion vector models.
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Differential contracting homotopy unifies all known disentangling solutions for dynamical and topological fields in linear 3d higher-spin theory and offers an alternative derivation.
Self-dual gravity with cosmological constant emerges uniquely as the rigid lower-spin sector of four-dimensional higher-spin interactions when only self-dual vertices are kept.
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Worldline Higher Spin Gravity
A worldline path integral model for higher-spin gravity in AdS4 is constructed using twistor actions and double-line vertices, reproducing boundary correlators of free boson and fermion vector models.
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Differential Contracting Homotopy in the Linearized 3d Higher-Spin Theory
Differential contracting homotopy unifies all known disentangling solutions for dynamical and topological fields in linear 3d higher-spin theory and offers an alternative derivation.
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Self-dual gravity from higher-spin theory
Self-dual gravity with cosmological constant emerges uniquely as the rigid lower-spin sector of four-dimensional higher-spin interactions when only self-dual vertices are kept.