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Generalizing Galileons
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The Galileons are a set of terms within four-dimensional effective field theories, obeying symmetries that can be derived from the dynamics of a 3+1-dimensional flat brane embedded in a 5-dimensional Minkowski Bulk. These theories have some intriguing properties, including freedom from ghosts and a non-renormalization theorem that hints at possible applications in both particle physics and cosmology. In this brief review article, we will summarize our attempts over the last year to extend the Galileon idea in two important ways. We will discuss the effective field theory construction arising from co-dimension greater than one flat branes embedded in a flat background - the multiGalileons - and we will then describe symmetric covariant versions of the Galileons, more suitable for general cosmological applications. While all these Galileons can be thought of as interesting four-dimensional field theories in their own rights, the work described here may also make it easier to embed them into string theory, with its multiple extra dimensions and more general gravitational backgrounds.
Forward citations
Cited by 3 Pith papers
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Diffeomorphic Scalar Duality
Every local scalar EFT admits a duality to an infinite class of other scalar theories via field-dependent diffeomorphisms preserving the S-matrix, extending to gravity in Einstein-Cartan formalism.
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Quantization of Brane-Skyrmions via Physics-Informed Neural Networks
Quantizes Brane-Skyrmions perturbatively in J² and employs PINNs to minimize energy while incorporating quantized spin backreaction for potential hadronic spectra modeling.
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A Note on the AdS/CFT Equivalence Transformation for Galileons in General Dimensions
The AdS/CFT field redefinition for galileons is extended to all dimensions, and in odd dimensions the tadpole term is shown to be expressible via ordinary invariant terms.
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