Parity violation in radiative neutron capture on deuteron
arXiv:1207.7039 · doi:10.1103/PhysRevC.86.045502
Abstract
Parity violating (PV) effects in neutron-deuteron radiative capture are studied using Desplanques, Donoghue, and Holstein (DDH) and effective field theory weak potentials. The values of PV effects are calculated using wave functions, obtained by solving three-body Faddeev equations in configuration space for phenomenological strong potentials. The relations between physical observables and low-energy constants are presented, and dependencies of the calculated PV effects on strong and weak potentials are discussed. The presented analysis shows the possible reason for the existing discrepancy in PV nuclear data analysis using the DDH approach and reveals a new opportunity to study short range interactions in nuclei.
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- A chiral effective field theory study of hadronic parity violation in few-nucleon systems
- Photon asymmetries in using EFT() approach
- Fundamental Neutron Physics: a White Paper on Progress and Prospects in the US