English

Deuteron electric dipole moment from holographic QCD

High Energy Physics - Theory 2020-04-23 v3

Abstract

We compute the electric dipole moment (EDM) of the deuteron in the holographic QCD model of Witten-Sakai-Sugimoto. Previously, the leading contribution to the EDM of nucleons was computed, finding opposite values for the proton and the neutron which then cancel each other in the deuteron state. Here we compute the next-to-leading order contribution which provides a splitting between their absolute value. At large NcN_{\rm c} and large 't Hooft coupling λ\lambda, nuclei are bound states of almost isolated nucleons. In particular, we find that in this limit the deuteron EDM is given by the splitting between proton and neutron EDMs. Our estimate for the deuteron EDM extrapolated to the physical values of NcN_{\rm c}, λ\lambda, MKKM_{\rm KK} and mqm_q is DD=0.92×1016θ ecm\mathcal{D}_D = -0.92\times 10^{-16} \theta\ e \cdot {cm}. This is consistent, in sign and magnitude, with results found previously in the literature and obtained using completely different methods.

Keywords

Cite

@article{arxiv.1912.01641,
  title  = {Deuteron electric dipole moment from holographic QCD},
  author = {Lorenzo Bartolini and Stefano Bolognesi and Sven Bjarke Gudnason},
  journal= {arXiv preprint arXiv:1912.01641},
  year   = {2020}
}

Comments

36 pages, 5 figures; v2: comments and refs. added; v3: minor changes