English

Relativistic effects in the strong and electromagnetic decays of ${D^*}$ meson

High Energy Physics - Phenomenology 2025-03-20 v2

Abstract

In this paper, we solve the complete Salpeter equation and use the obtained relativistic wave function to calculate the strong and radiative electromagnetic decays of the D{D^*} meson. { We obtain the results Γ(D(2007)0D0π0)=34.6 keV\Gamma(D^{*}(2007)^{0}\to D^{0}\pi^{0})=34.6~\rm{keV} and Γ(D(2007)0D0γ)=19.4 keV\Gamma(D^{*}(2007)^{0}\rightarrow D^{0}\gamma)=19.4~\rm{keV}, and the estimated full width is Γ(D(2007)0)=54.0 keV\Gamma(D^{*}(2007)^{0})=54.0~\rm{keV}.} The focus of this study is on the relativistic corrections. In our method, the wave function of the DD meson is not a pure SS-wave, but includes both a non-relativistic SS-wave and a relativistic PP-wave, while the wave function of the DD^* meson includes a non-relativistic SS-wave as well as both relativistic PP-wave and DD-wave. Therefore, in this case, the decay DDγ{D^{*}\rightarrow{D}\gamma} is not a non-relativistic M1M1 transition, but rather an M1+E2+M3+E4M1+E2+M3+E4 decay. We find that in a strong decay DDπD^{*}\rightarrow{D}{\pi}, the non-relativistic contribution is dominant, while in an electromagnetic decay DDγ{D^{*}\rightarrow{D}\gamma}, the relativistic correction is dominant.

Keywords

Cite

@article{arxiv.2412.10775,
  title  = {Relativistic effects in the strong and electromagnetic decays of ${D^*}$ meson},
  author = {Man Jia and Wei Li and Su-Yan Pei and Xin-Yao Du and Guo-Zhu Ning and Guo-Li Wang},
  journal= {arXiv preprint arXiv:2412.10775},
  year   = {2025}
}

Comments

15 pages, 2 figures, revised version published in EPJC