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arXiv:2204.04286·v3·High Energy Physics — Phenomenology

Explaining The Muon Anomaly and New CDF II W-Boson Mass in the Framework of (Extra)Ordinary Gauge Mediation

Xiao Kang Du🇨🇳 · Zhuang Li🇨🇳 · Fei Wang🇨🇳 · Ying Kai Zhang🇨🇳

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Abstract

The SUSY contributions to muon anomaly can not even reach in ordinary gauge mediated SUSY breaking (GMSB) scenarios because of the strong correlations between the colored sparticle masses and the uncolored EW sparticle masses. An interesting extension to GMSB is the (Extra)Ordinary Gauge Mediation (EOGM), which can relax the correlations between squarks and sleptons with non-universal choices for and . We find that EOGM scenarios with can explain the muon anomaly within range, however can not explain the new W-boson mass by CDF II. We also propose to extend EOGM with additional adjoint and messengers at a high scale of order GeV, which can shift the gauge coupling unification scale to the string scale. Such EOGM extension scenarios with adjoint messengers could spoil the unwanted gaugino mass ratios and give large SUSY contributions to for , which can explain the muon anomaly up to . Besides, because of the large messenger scale of order GeV, such scenarios will in general lead to large at the EW scale, which can accommodate the 125 GeV Higgs easily and possibly lead to smaller EWFT as well as BGFT. We discuss the possibility to explain the new CDF II W-boson mass in the GMSB-type framework. We find that SUSY contributions can marginally account for the new W-boson mass in the region with sleptons and wino both being light.

Comments: 22 pages, 5 figures. Minor changes, numerical results improved

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