Coherent scattering and macroscopic coherence: Implications for neutrino, dark matter and axion detection
arXiv:1806.10962 · doi:10.1007/JHEP10(2018)045
Abstract
We study the question of whether coherent neutrino scattering can occur on macroscopic scales, leading to a significant increase of the detection cross section. We concentrate on radiative neutrino scattering on atomic electrons (or on free electrons in a conductor). Such processes can be coherent provided that the net electron recoil momentum, i.e. the momentum transfer from the neutrino minus the momentum of the emitted photon, is sufficiently small. The radiative processes is an attractive possibility as the energy of the emitted photons can be as large as the momentum transfer to the electron system and therefore the problem of detecting extremely low energy recoils can be avoided. The requirement of macroscopic coherence severely constrains the phase space available for the scattered particle and the emitted photon. We show that in the case of the scattering mediated by the usual weak neutral current and charged current interactions this leads to a strong suppression of the elementary cross sections and therefore the requirement of macroscopic coherence results in a reduction rather than an increase of the total detection cross section. However, for the scattering mediated by neutrino magnetic or electric dipole moments coherence effects can actually increase the detection rates. Effects of macroscopic coherence can also allow detection of neutrinos in 100 eV -- a few keV energy range, which is currently not accessible to the experiment. A similar coherent enhancement mechanism can work for relativistic particles in the dark sector, but not for the conventionally considered non-relativistic dark matter.
LaTeX, 31 page, 2 figures. v2: a section on coherent axion detection and an appendix added; title modified
References in corpus (5)
- Observation of Coherent Elastic Neutrino-Nucleus Scattering
- (In)direct Detection of Boosted Dark Matter
- Probing sub-GeV Dark Matter with conventional detectors
- COHERENT Collaboration data release from the first observation of coherent elastic neutrino-nucleus scattering
- Solar neutrino flux at keV energies
Cited by in corpus (11)
- Producing a new Fermion in Coherent Elastic Neutrino-Nucleus Scattering: from Neutrino Mass to Dark Matter
- Theory of elastic neutrino-electron scattering
- A Dark Matter Interpretation of Excesses in Multiple Direct Detection Experiments
- A Statistical Analysis of the COHERENT Data and Applications to New Physics
- Limits on the cosmic neutrino background
- Neutrino physics with dark matter detectors
- Exploring the ultra-light to sub-MeV dark matter window with atomic clocks and co-magnetometers
- Neutrino mass from bremsstrahlung endpoint in coherent scattering on nuclei
- Neutron Stars as a Probe of Cosmic Neutrino Background
- Detecting meV-Scale Dark Matter via Coherent Scattering with an Asymmetric Torsion Balance
- Probing Cosmic Neutrino Background through Parametric Fluorescence