Axionlike particles searches in reactor experiments
arXiv:2010.15712
Abstract
Reactor neutrino experiments provide a rich environment for the study of axionlike particles (ALPs). Using the intense photon flux produced in the nuclear reactor core, these experiments have the potential to probe ALPs with masses below 10 MeV. We explore the feasibility of these searches by considering ALPs produced through Primakoff and Compton-like processes as well as nuclear transitions. These particles can subsequently interact with the material of a nearby detector via inverse Primakoff and inverse Compton-like scatterings, via axio-electric absorption, or they can decay into photon or electron-positron pairs. We demonstrate that reactor-based neutrino experiments have a high potential to test ALP-photon couplings and masses, currently probed only by cosmological and astrophysical observations, thus providing complementary laboratory-based searches. We furthermore show how reactor facilities will be able to test previously unexplored regions in the MeV ALP mass range and ALP-electron couplings of the order of as well as ALP-nucleon couplings of the order of , testing regions beyond TEXONO and Borexino limits.
40 pages, 13 figures, 4 tables. SN1987A and Globular Cluster stars limits updated, references added
References in corpus (13)
- Revisiting the bound on axion-photon coupling from Globular Clusters
- Bosonic super-WIMPs as keV-scale dark matter
- Revised constraints and Belle II sensitivity for visible and invisible axion-like particles
- A facility to Search for Hidden Particles (SHiP) at the CERN SPS
- Probing eV-scale axions with CAST
- Redefining the Axion Window
- Discovering New Light States at Neutrino Experiments
- COHERENT constraints on nonstandard neutrino interactions
- The Need for Purely Laboratory-Based Axion-Like Particle Searches
- Impact of form factor uncertainties on interpretations of coherent elastic neutrino-nucleus scattering data
- Recent probes of standard and non-standard neutrino physics with nuclei
- Search of Axions from a Nuclear Power Reactor with a High-Purity Germanium Detector
- Charge Coupled Devices for detection of coherent neutrino-nucleus scattering