English

Renormalizability of leading order covariant chiral nucleon-nucleon interaction

Nuclear Theory 2021-05-26 v1 High Energy Physics - Phenomenology

Abstract

In this work, we study the renormalization group invariance (RGI) of the recently proposed covariant power counting (PC) scheme in the case of nucleon-nucleon scattering [Chin.Phys. C42 (2018) 014103] at leading order (LO). We show that unlike the LO Weinberg case, RGI is satisfied in the 3P0^3P_{0} channel, because a term of pppp' appears naturally in the covariant PC scheme at LO. Another interesting feature is that the 1S0^1S_{0} and 3P1^3P_{1} channels are correlated. Fixing the two relevant low energy constants by fitting to the 1S0^1S_{0} phase shifts at Tlab.=10T_\mathrm{lab.}=10 and 2525 MeV with a cutoff Λ\Lambda of 400650400-650 MeV, the 3P1^3P_{1} phase shifts can be described relatively well. In the limit of Λ\Lambda\rightarrow \infty, the 1S0^1S_0 channel becomes cutoff independent, while RGI is lost in the 3P1^3P_{1} channel, consistent with the Wigner bound and the previous observation that the 3P1^{3}P_1 channel better be treated perturbatively. As for the 1P1^1P_{1} and 3S1^3S_{1}-3D1^3D_{1} channels, RGI is satisfied, similar to the Weinberg approach.

Keywords

Cite

@article{arxiv.2001.08483,
  title  = {Renormalizability of leading order covariant chiral nucleon-nucleon interaction},
  author = {Chun-Xuan Wang and Li-Sheng Geng and Bingwei Long},
  journal= {arXiv preprint arXiv:2001.08483},
  year   = {2021}
}

Comments

15 pages, 7 figures