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arXiv:2601.19495·v1·High Energy Physics — Phenomenology

Probing EFT breakdown in the tails of observables

Daniel Gillies🇬🇧 · Andrea Banfi🇬🇧 · Adam Martin🇺🇸

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Abstract

In this letter, we test clipping effective field theory (EFT) simulations as a method of ensuring EFT validity. The procedure imposes that, at the level of the simulation, the invariant mass of a pair is less than the new physics scale . We compare this to two other methods, comparison bin by bin of dimension-6 and dimension-8 squared contributions and implementing a cut on data. We find that setting is not strict enough to ensure that the hierarchy of EFT operators is respected for dimension-6 and dimension-8 contributions. We also show that, even when using a stricter cut on , due to different correlations between and at different EFT orders, the bins in (the invariant mass of the leptons originating from decays) used in an EFT fit may not truly be in the regime of EFT validity when performing a dimension-6 fit with . We also explore the correlations of three transverse mass observables: and , finding that and follow the distribution more closely than . We present sensitivity studies using both the distribution and distribution. We test implementing an experimental cut on in place of clipping the EFT simulation at . We finally comment that adding cuts only to the EFT simulation could be interpreted as modifying the SMEFT expansion by a form factor and could therefore impact the model independence of EFT fits under this procedure.

Comments: Prepared for submission to Physics Letters B

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