Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10725205 | Physics Letters B | 2011 | 4 Pages |
Abstract
A simple explanation of the W+dijet excess recently reported by the CDF collaboration involves the introduction of a new gauge boson with sizable couplings to quarks, but with no or highly suppressed couplings to leptons. Anomaly-free theories which include such a leptophobic gauge boson must also include additional particle content, which may include a stable and otherwise viable candidate for dark matter. Based on the couplings and mass of the Zâ² required to generate the CDF excess, we predict such a dark matter candidate to possess an elastic scattering cross section with nucleons on the order of Ïâ¼10â40 cm2, providing a natural explanation for the signals reported by the CoGeNT and DAMA/LIBRA collaborations. In this light, CDF may be observing the gauge boson responsible for the force which mediates the interactions between the dark and visible matter of our universe.
Related Topics
Physical Sciences and Engineering
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Authors
Matt Buckley, Pavel Fileviez Pérez, Dan Hooper, Ethan Neil,