Prospects for detecting axionlike particles at the Coherent CAPTAIN-Mills experiment
arXiv:2112.09979 · doi:10.1103/PhysRevD.107.095036
Abstract
We show results from the Coherent CAPTAIN Mills (CCM) 2019 engineering run which begin to constrain regions of parameter space for axion-like particles (ALPs) produced in electromagnetic particle showers in an 800 MeV proton beam dump, and further investigate the sensitivity of ongoing data-taking campaigns for the CCM200 upgraded detector. Based on beam-on background estimates from the engineering run, we make realistic extrapolations for background reduction based on expected shielding improvements, reduced beam width, and analysis-based techniques for background rejection. We obtain reach projections for two classes of signatures; ALPs coupled primarily to photons can be produced in the tungsten target via the Primakoff process, and then produce a gamma-ray signal in the Liquid Argon (LAr) CCM detector either via inverse Primakoff scattering or decay to a photon pair. ALPs with significant electron couplings have several additional production mechanisms (Compton scattering, annihilation, ALP-bremsstrahlung) and detection modes (inverse Compton scattering, external pair conversion, and decay to ). In some regions, the constraint is marginally better than both astrophysical and terrestrial constraints. With the beginning of a three year run, CCM will be more sensitive to this parameter space by up to an order of magnitude for both ALP-photon and ALP-electron couplings. The CCM experiment will also have sensitivity to well-motivated parameter space of QCD axion models. It is only a recent realization that accelerator-based large volume liquid argon detectors designed for low energy coherent neutrino and dark matter scattering searches are also ideal for probing ALPs in the unexplored MeV mass scale.
Accepted for publication in Physical Review D, in production
References in corpus (24)
- Revisiting the bound on axion-photon coupling from Globular Clusters
- First results from a microwave cavity axion search at 24 micro-eV
- Stellar cooling bounds on new light particles: plasma mixing effects
- Revised constraints and Belle II sensitivity for visible and invisible axion-like particles
- Physics potential of the International Axion Observatory (IAXO)
- The Need for Purely Laboratory-Based Axion-Like Particle Searches
- Compatibility of the chameleon-field model with fifth-force experiments, cosmology, and PVLAS and CAST results
- Compatibility of CAST search with axion-like interpretation of PVLAS results
- The Search for Feebly-Interacting Particles
- Search for Axionlike and Scalar Particles with the NA64 Experiment
- Limits on Axion Couplings from the first 80-day data of PandaX-II Experiment
- Reconciling the CAST and PVLAS Results
- Source mass characterization in the ARIADNE axion experiment
- Search of Axions from a Nuclear Power Reactor with a High-Purity Germanium Detector
- First Dark Matter Search Results From Coherent CAPTAIN-Mills
- Supernova bound on Axion-Like Particles coupled with electrons
- Improved exclusion limit for light dark matter from annihilation in NA64
- Search for Cosmic Axions using an Optical Interferometer
- Search for Solar Axions Produced by Primakoff Conversion Using Resonant Absorption by Tm Nuclei
- Light scalars coupled to photons and non-newtonian forces
- Solutions to the MiniBooNE Anomaly from New Physics in Charged Meson Decays
- First Leptophobic Dark Matter Search from Coherent CAPTAIN-Mills
- Search for solar Kaluza-Klein axion by annual modulation with the XMASS-I detector
- Pathfinder for a High Statistics Search for Missing Energy In Gamma Cascades
Cited by in corpus (5)
- Probing the dark sector with nuclear transition photons
- New Constraints on Axion-Like Particles with the NEON Detector at a Nuclear Reactor
- Novel approach to investigate ATOMKI anomaly using Coherent CAPTAIN-Mills detectors
- Finding BSM Needles in Electromagnetic Haystacks at DUNE
- Enhanced active-sterile neutrino polarizability at the intensity frontier