English

Photon asymmetries in $nd\rightarrow$ $^3H\gamma$ using EFT($\pi/!/!/!/$) approach

Nuclear Theory 2014-10-21 v1

Abstract

The parity-violating Lagrangian of the weak nucleon-nucleon (NNNN) interaction in the pionless effective field theory (EFT(//!/!/!/pi//!/!/!/pi)) approach contains five independent unknown low-energy coupling constants (LECs). The photon asymmetry with respect to neutron polarization in npnp\rightarrow dγd\gamma AγnpA^{np}_\gamma, the circular polarization of outgoing photon in npnp\rightarrow dγd\gamma PγnpP^{np}_\gamma, the neutron spin rotation in hydrogen 1ρdϕnpdl\frac{1}{\rho}\frac{d\phi^{np}}{dl}, the neutron spin rotation in deuterium 1ρdϕnddl\frac{1}{\rho}\frac{d\phi^{nd}}{dl} and the circular polarization of γ\gamma-emission in ndnd\rightarrow 3Hγ^3H\gamma PγndP^{nd}_\gamma are the parity-violating observables which have been recently calculated in terms of parity-violating LECs in the EFT(//!/!/!/pi//!/!/!/pi) framework. We obtain the LECs by matching the parity-violating observables to the Desplanques, Donoghue, and Holstein (DDH) best value estimates. Then, we evaluate photon asymmetry with respect to the neutron polarization aγnda^{nd}_\gamma and the photon asymmetry in relation to deuteron polarization AγndA^{nd}_\gamma in ndnd\rightarrow 3Hγ^3H\gamma process. We finally compare our EFT(//!/!/!/pi//!/!/!/pi) photon asymmetries results with the experimental values and the previous calculations based on the DDH model.

Keywords

Cite

@article{arxiv.1405.2412,
  title  = {Photon asymmetries in $nd\rightarrow$ $^3H\gamma$ using EFT($\pi/!/!/!/$) approach},
  author = {M. Moeini Arani and S. Bayegan},
  journal= {arXiv preprint arXiv:1405.2412},
  year   = {2014}
}
R2 v1 2026-06-22T04:10:38.853Z