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Dark photon kinetic mixing effects for the CDF W-mass measurement

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arxiv 2204.10156 v3 pith:CWDCHA45 submitted 2022-04-21 hep-ph

classification hep-ph
keywords mixingdarkkineticmassbosongaugeinteractionsphoton
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

A new $U(1)_X$ gauge boson $X$ primarily interacting with a dark sector can have renormalizable kinetic mixing with the standard model (SM) $U(1)_Y$ gauge boson $Y$. This mixing besides introduces interactions of dark photon and dark sector with SM particles, it also modifies interactions among SM particles. The modified interactions can be casted into the oblique $S$, $T$ and $U$ parameters. We find that with the dark photon mass larger than the $Z$ boson mass, the kinetic mixing effects can reduce the tension of the W mass excess problem reported recently by CDF from $7\sigma$ deviation to within $3 \sigma$ compared with theory prediction. If there is non-abelian kinetic mixing between $U(1)_X$ and $SU(2)_L$ gauge bosons, in simple renormalizable models of this type a triplet Higgs is required to generate the mixing. We find that this triplet with a vacuum expectation value of order 5 GeV can naturally explain the W mass excess.

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  1. Constraints on the dark sector from electroweak precision observables

    hep-ph 2025-06 conditional novelty 3.0 of 10

    Electroweak precision data set mass-dependent upper limits on dark photon mixing, and the Z width adds direct 95 percent bounds on its coupling to a 10 GeV dark fermion.

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