English

Partial wave effects in the heavy quarkonium radiative electromagnetic decays

High Energy Physics - Phenomenology 2023-08-22 v2 High Energy Physics - Experiment

Abstract

In a previous paper \cite{Bc}, it was pointed out that the wave functions of all particles are not pure waves, besides the main partial waves, they all contain {other partial waves}. It is very interesting to know what role these different partial waves play in particle transitions. Therefore, by using the Bethe-Salpeter equation method, we study the radiative electromagnetic decays ψγχcJ\psi\rightarrow\gamma\chi_{_{cJ}} and ΥγχbJ\Upsilon\rightarrow\gamma\chi_{_{bJ}} (J=0,1,2J=0,1,2). We find that for the SS and PP wave dominated states, like the ψ(2S)\psi(2S), Υ(2S)\Upsilon(2S), χcJ(1P)\chi_{_{cJ}}(1P), and χbJ(1P)\chi_{_{bJ}}(1P) etc., the dominant SS and PP waves provide main and nonrelativistic contrition to the decays; other partial waves mainly contribute to the relativistic correction. For the states like the ψ(1D)\psi(1D), Υ(2D)\Upsilon(2D), χc2(1F)\chi_{c2}(1F), and χb2(1F)\chi_{b2}(1F) etc., they are the SPDS-P-D mixing state dominated by DD wave or the PDFP-D-F mixing state dominated by FF wave. Large decay widths are found in the transitions ψ(2D)χc2(1F)\psi(2D)\to \chi_{c2}(1F), Υ(1D)χbJ(1P)\Upsilon(1D)\to \chi_{bJ}(1P), and Υ(2D)χbJ(2P)\Upsilon(2D)\to \chi_{bJ}(2P) etc., which may be helpful to study the missing states χc2(1F)\chi_{c2}(1F), Υ(1D)\Upsilon(1D), and Υ(2D)\Upsilon(2D).

Keywords

Cite

@article{arxiv.2212.02838,
  title  = {Partial wave effects in the heavy quarkonium radiative electromagnetic decays},
  author = {Su-Yan Pei and Wei Li and Ting-Ting Liu and Meng Han and Guo-Li Wang and Tianhong Wang},
  journal= {arXiv preprint arXiv:2212.02838},
  year   = {2023}
}

Comments

31 pages, 19 tables

R2 v1 2026-06-28T07:23:20.804Z