Novel Concept for a Neutron Electric Charge Measurement using a Talbot-Lau Interferometer at a Pulsed Source
arXiv:1812.03986 · doi:10.1103/PhysRevC.98.045503
Abstract
A concept to measure the neutron electric charge is presented which employs a precision Talbot-Lau interferometer in a high-intensity pulsed neutron beam. It is demonstrated that the sensitivity for a neutron charge measurement can be improved by up to two orders of magnitude compared to the current best direct experimental limit.
References in corpus (9)
- Experimental test of quantum contextuality in neutron interferometry
- Gravity Resonance Spectroscopy Constrains Dark Energy and Dark Matter Scenarios
- Neutron Interferometry constrains dark energy chameleon fields
- Gravitation and quantum interference experiments with neutrons
- Experimental demonstration of direct path state characterization by strongly measuring weak values in a matter-wave interferometer
- Testing Atom and Neutron Neutrality with Atom Interferometry
- Three Phase-Grating Moire Neutron Interferometer for Large Interferometer Area Applications
- Precision Measurement of the n-3He Incoherent Scattering Length Using Neutron Interferometry
- The NNbar Experiment at the European Spallation Source