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Spinning Sum Rules for the Dimension-Six SMEFT

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arxiv 2206.13524 v2 pith:M3IMMDNM submitted 2022-06-27 hep-ph hep-th

classification hep-phhep-th
keywords rulesdimension-sixspinningdispersiveoperatorsparameterssmeftspin
verification ladder T0 review T1 audit T2 compute T3 formal

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We construct new dispersive sum rules for the effective field theory of the standard model at mass dimension six. These spinning sum rules encode information about the spin of UV states: the sign of the IR Wilson coefficients carries a memory of the dominant spin in the UV completion. The sum rules are constructed for operators containing scalars and fermions, although we consider the dimension-six SMEFT exhaustively, outlining why equivalent relations do not hold for the remaining operators. As with any dimension-six dispersive argument, our conclusions are contingent on the absence of potential poles at infinity, so-called boundary terms, and we discuss in detail where these are expected to appear. There are a number of phenomenological applications of spinning sum rules, and as an example we explore the connection to the Peskin-Takeuchi parameters and, more generally, the set of oblique parameters in universal theories.

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Cited by 5 Pith papers

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