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Positivity Bounds on parity-violating scalar-tensor EFTs

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arxiv 2410.09794 v2 pith:SX4GFZJ2 submitted 2024-10-13 hep-th gr-qc

classification hep-thgr-qc
keywords coefficientsboundsparity-conservingparity-violatingcausalitycounterpartshigherorder
verification ladder T0 review T1 audit T2 compute T3 formal
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Using dispersion relations of the scattering amplitudes and semi-definite programming, we calculate causality bounds on the Wilson coefficients in scalar-tensor effective field theories that include parity-violating operators. Particular attention has been paid to the dynamical-Chern-Simons (dCS) and scalar-Gauss-Bonnet (sGB) couplings, along with higher order coefficients, and the interplay between them. For the leading terms, the bounds on the parity-conserving and -violating coefficients are simply projections of the complex coefficients. Some parity-violating coefficients are found to be upper bounded by the parity-conserving counterparts, or the higher order parity-conserving coefficients. While the observational constraints on parity-violating coefficients are weaker than the parity-conserving counterparts, the causality bounds are of comparable strength and thus may play a more prominent role in constraining strong gravity effects in upcoming observations.

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Cited by 8 Pith papers

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