New physics searches using ProtoDUNE and the CERN SPS accelerator

Author:

Coloma PilarORCID,López-Pavón Jacobo,Molina-Bueno Laura,Urrea Salvador

Abstract

Abstract The exquisite capabilities of liquid Argon Time Projection Chambers make them ideal to search for weakly interacting particles in Beyond the Standard Model scenarios. Given their location at CERN the ProtoDUNE detectors may be exposed to a flux of such particles, produced in the collisions of 400 GeV protons (extracted from the Super Proton Synchrotron accelerator) on a target. Here we point out the interesting possibilities that such a setup offers to search for both long-lived unstable particles (Heavy Neutral Leptons, axion-like particles, etc) and stable particles (e.g. light dark matter, or millicharged particles). Our results show that, under conservative assumptions regarding the expected luminosity, this setup has the potential to improve over present bounds for some of the scenarios considered. This could be done within a short timescale, using facilities that are already in place at CERN, and without interfering with the experimental program in the North Area at CERN.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference58 articles.

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2. DUNE collaboration, The single-phase ProtoDUNE technical design report, arXiv:1706.07081 [INSPIRE].

3. DUNE collaboration, Deep Underground Neutrino Experiment (DUNE), far detector technical design report, volume I. Introduction to DUNE, 2020 JINST 15 T08008 [arXiv:2002.02967] [INSPIRE].

4. T2K collaboration, Search for heavy neutrinos with the T2K near detector ND280, Phys. Rev. D 100 (2019) 052006 [arXiv:1902.07598] [INSPIRE].

5. MicroBooNE collaboration, Search for heavy neutral leptons decaying into muon-pion pairs in the MicroBooNE detector, Phys. Rev. D 101 (2020) 052001 [arXiv:1911.10545] [INSPIRE].

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