arXiv:2609.08712·v1·High Energy Physics — Phenomenology
From LUX-ZEPLIN to Colliders: Probing Higgsino Dark Matter
Kingman Cheung · Sin Kyu Kang · Ranjeet Kumar
Abstract
The high-energy nuclear recoil event with recoil energy observed by the LZ collaboration provides an exciting hint toward a model with a Higgsino inelastic dark matter. Such a recoil energy requires a mass splitting of order () between the two nearly-degenerate neutral states. We show that within the framework of the MSSM, the model predicts a nearly-degenerate charged Higgsino state, chargino, whose mass splitting from the neutral states is of order ~MeV. The subsequent decays of such charginos once produced at colliders would lead to a sub-centimeter charged track or tracklet (with lifetime ) at the detector. We show that such a scenario is not constrained by the current LHC bounds, and could be tested at future high-energy colliders, including HL-LHC, 100 TeV colliders, and muon colliders. The most critical requirement is how short a track or tracklet can be reconstructed.
Comments: 19 pages, 2 figures, 1 table