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DarkQuest: A dark sector upgrade to SpinQuest at the 120 GeV Fermilab Main Injector

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arxiv 2203.08322 v1 pith:DB3ULR2O submitted 2022-03-16 hep-ex hep-ph

DarkQuest: A dark sector upgrade to SpinQuest at the 120 GeV Fermilab Main Injector

classification hep-ex hep-ph
keywords darkmattersectordarkquestexperimentalmasspartparticles
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Expanding the mass range and techniques by which we search for dark matter is an important part of the worldwide particle physics program. Accelerator-based searches for dark matter and dark sector particles are a uniquely compelling part of this program as a way to both create and detect dark matter in the laboratory and explore the dark sector by searching for mediators and excited dark matter particles. This paper focuses on developing the DarkQuest experimental concept and gives an outlook on related enhancements collectively referred to as LongQuest. DarkQuest is a proton fixed-target experiment with leading sensitivity to an array of visible dark sector signatures in the MeV-GeV mass range. Because it builds off of existing accelerator and detector infrastructure, it offers a powerful but modest-cost experimental initiative that can be realized on a short timescale.

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Cited by 4 Pith papers

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  3. Modeling nonlinear scales for dynamical dark energy cosmologies with COLA

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    COLA-based hybrid emulator reproduces nonlinear power spectrum boosts in w0wa models to <2% error vs EuclidEmulator2 and produces <0.3σ shifts in LSST-like cosmic shear parameter constraints.

  4. Beam-Dump Ceiling and Its Experimental Implication: The Case of a Portable Experiment

    hep-ph 2024-01 unverdicted novelty 6.0

    Beam-dump experiments for visibly decaying mediators hit an intrinsic sensitivity ceiling in the prompt-decay region that cannot be overcome by more data or better backgrounds, favoring compact portable setups.