PaperPanorama

arXiv:2609.07225·v1·High Energy Physics — Phenomenology

Pseudo-Dirac Inelastic Dark Matter in the Leptophobic Model: Confronting the LUX-ZEPLIN High-Recoil Event with Collider Searches

Xin-Yu Du🇨🇳 · Wenjie Huang🇨🇳 · Keping Xie🇨🇳

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Abstract

Interpreting the ~keV nuclear-recoil candidate reported by LUX-ZEPLIN (LZ) as an endothermic transition needs two ingredients usually put in by hand: a stable dark state, and a coherent current that is purely off diagonal. Gauging baryon number supplies both. For the minimal dark charges and , the scalars that generate the dark masses leave an exact residual parity stabilizing the lightest state, while the same Majorana masses make the vector current transition dominated as an identity rather than a choice. At ~TeV and ~keV the model is over-determined: the observed LZ interval, a leading-order relic estimate and the LHC dijet limit meet at the single perturbatively acceptable point . That point is allowed by currently existing searches but sits just below the trigger-level dijet boundary, so it is alive and not yet decided--and a re-run of that analysis on the Run-3 data at ~TeV, already on tape, will exclude it or find it. Nor is the interpretation confined to that splitting: at ~keV, the same construction predicts a heavier mediator at comparable coupling, -~TeV with -, a range the HL-LHC dijet program will probe.

Comments: 10 pages, 4 figures, 1 table