Neutron experiments to search for new spin-dependent interactions
arXiv:1107.1481 · doi:10.1134/S0021364011180111
Abstract
The consideration is presented of possible neutron experiments to search for new short-range spin-dependent forces. The spin-dependent nucleon-nucleon interaction between neutron and nuclei may cause different effects: phase shift of a neutron wave in neutron interferometers of different kind, in particular of the Lloyd mirror configuration, neutron spin rotation in the pseudo-magnetic field, and transverse deflection of polarized neutron beam by a slab of substance. Estimates of sensitivity of these experiments are performed.
10 p., 4 fig, Corrected Fig. 4, 1 Ref. added
References in corpus (8)
- Tests of the Gravitational Inverse-Square Law below the Dark-Energy Length Scale
- Particle Physics Implications of a Recent Test of the Gravitational Inverse Square Law
- Spin-Dependent Macroscopic Forces from New Particle Exchange
- Improved constraints on non-Newtonian forces at 10 microns
- Preferred-Frame and CP-Violation Tests with Polarized Electrons
- A New Constraint for the Coupling of Axion-like particles to Matter via Ultra-Cold Neutron Gravitational Experiments
- Polarized 3He as a probe for short-range spin-dependent interactions
- New constraints for CP-violating forces between nucleons in the range 10-4 cm - 1 cm