Model Dependence of the 2H Electric Dipole Moment
arXiv:1011.4968 · doi:10.1103/PhysRevC.82.064002
Abstract
Background: Direct measurement of the electric dipole moment (EDM) of the neutron lies in the future; measurement of a nuclear EDM may well come first. The deuteron is one nucleus for which exact model calculations are feasible. Purpose: We explore the model dependence of deuteron EDM calculations. Methods: Using a separable potential formulation of the Hamiltonian, we examine the sensitivity of the deuteron EDM to variation in the nucleon-nucleon interaction. We write the EDM as the sum of two terms, the first depending on the target wave function with plane-wave intermediate states, and the second depending on intermediate multiple scattering in the 3P1 channel, the latter being sensitive to the off-shell behavior of the 3P1 amplitude. Results: We compare the full calculation with the plane-wave approximation result, examine the tensor force contribution to the model results, and explore the effect of short range repulsion found in realistic, contemporary potential models of the deuteron. Conclusions: Because one-pion exchange dominates the EDM calculation, separable potential model calculations will provide an adequate description of the 2H EDM until such time as a better than 10% measurement is obtained.
21 pages, 2 figures, submitted to Physical Review C
References in corpus (1)
Cited by in corpus (5)
- Unraveling models of CP violation through electric dipole moments of light nuclei
- P- and T-Violating Lagrangians in Chiral Effective Field Theory and Nuclear Electric Dipole Moments
- The electric dipole moment of the deuteron from the QCD -term
- Enhancement of the CP-odd effect in the nuclear electric dipole moment of Li
- Electric dipole moments of the nucleon and light nuclei