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Simplifying the EFT of Inflation: Generalized Disformal Transformations and Redundant Couplings

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abstract

We study generalized disformal transformations, including derivatives of the metric, in the context of the Effective Field Theory of Inflation. All these transformations do not change the late-time cosmological observables but change the coefficients of the operators in the action: some couplings are effectively redundant. At leading order in derivatives and up to cubic order in perturbations, one has 6 free functions that can be used to set to zero 6 of the 17 operators at this order. This is used to show that the tensor three-point function cannot be modified at leading order in derivatives, while the scalar-tensor-tensor correlator can only be modified by changing the scalar dynamics. At higher order in derivatives there are transformations that do not affect the Einstein-Hilbert action: one can find 6 additional transformations that can be used to simplify the inflaton action, at least when the dynamics is dominated by the lowest derivative terms. We also identify the leading higher-derivative corrections to the tensor power spectrum and bispectrum.

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Microcausality without Lorentz invariance

hep-th · 2025-02-06 · conditional · novelty 8.0

Microcausality in Lorentz-violating states is equivalent to specific analyticity and exponential boundedness of spatial Fourier transforms of commutators, with explicit EFT constraints.

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  • Microcausality without Lorentz invariance hep-th · 2025-02-06 · conditional · none · ref 36 · internal anchor

    Microcausality in Lorentz-violating states is equivalent to specific analyticity and exponential boundedness of spatial Fourier transforms of commutators, with explicit EFT constraints.