Atomic parity nonconservation, neutron radii, and effective field theories of nuclei

Tapas Sil, M. Centelles, X. Viñas, and J. Piekarewicz
Phys. Rev. C 71, 045502 – Published 21 April 2005

Abstract

Accurately calibrated effective field theories are used to compute atomic parity nonconserving (APNC) observables. Although accurately calibrated, these effective field theories predict a large spread in the neutron skin of heavy nuclei. Whereas the neutron skin is strongly correlated to numerous physical observables, in this contribution we focus on its impact on new physics through APNC observables. The addition of an isoscalar-isovector coupling constant to the effective Lagrangian generates a wide range of values for the neutron skin of heavy nuclei without compromising the success of the model in reproducing well-constrained nuclear observables. Earlier studies have suggested that the use of isotopic ratios of APNC observables may eliminate their sensitivity to atomic structure. This leaves nuclear structure uncertainties as the main impediment for identifying physics beyond the standard model. We establish that uncertainties in the neutron skin of heavy nuclei are at present too large to measure isotopic ratios to better than the 0.1% accuracy required to test the standard model. However, we argue that such uncertainties will be significantly reduced by the upcoming measurement of the neutron radius in Pb208 at the Jefferson Laboratory.

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  • Received 5 January 2005

DOI:https://doi.org/10.1103/PhysRevC.71.045502

©2005 American Physical Society

Authors & Affiliations

Tapas Sil, M. Centelles, and X. Viñas

  • Departament d'Estructura i Constituents de la Matèria, Facultat de Física, Universitat de Barcelona, Diagonal 647, E-08028 Barcelona, Spain

J. Piekarewicz

  • Department of Physics, Florida State University, Tallahassee, Florida 32306

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Vol. 71, Iss. 4 — April 2005

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