Nonthermal Solar Stalling of an Inelastic Scalar Signal in Xenon
XinXin Qi, Hao Sun
Abstract
The LUX-ZEPLIN experiment has reported one nuclear-recoil candidate at 248 in an extended-energy search. We construct an anomaly-free U(1)B-3Lτ model in which an 840 complex scalar undergoes an endothermic transition with splitting 320. A 160 vector with dark charge Qχ=1 gives 0.958 accepted events in a public LZ-response reconstruction while scalar annihilation yields Ωh2=0.1200. The physical nucleon ratio fn/fp=-0.86985 suppresses solar iron capture, leaving C=1.09×1019\, s-1. We then evolve captured particles in energy, angular momentum, and internal state, including finite collision rates, thermal nuclear velocities, and the excited-state decay. The distribution stalls at an equivalent radius r eff=0.194--0.198, for which Γ ann=(1.33--1.38)×1015\, s-1, below a model-specific IceCube public-data proxy by more than three orders of magnitude. The benchmark also lies below the dedicated NA64 B-L limit. Thus solar-neutrino bounds on electroweak inelastic dark matter do not transfer model-independently to light-mediator scalar realizations.
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