English

$Z_{cs}$, $Z_c$ and $Z_b$ states under the complex scaling method

High Energy Physics - Phenomenology 2023-05-30 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Theory

Abstract

We investigate the ZbZ_b, ZcZ_c and ZcsZ_{cs} states within the chiral effective field theory framework and the SS-wave single channel molecule picture. With the complex scaling method, we accurately solve the Schr\"odinger equation in momentum space. Our analysis reveals that the Zb(10610)Z_b(10610), Zb(10650)Z_b(10650), Zc(3900)Z_c(3900) and Zc(4020)Z_c(4020) states are the resonances composed of the SS-wave (BBˉ+BBˉ)/2(B\bar{B}^{*}+B^{*}\bar{B})/\sqrt{2}, BBˉB^{*}\bar{B}^*, (DDˉ+DDˉ)/2(D\bar{D}^{*}+D^{*}\bar{D})/\sqrt{2} and DDˉD^{*}\bar{D}^*, respectively. Furthermore, although the Zcs(3985)Z_{cs}(3985) and Zcs(4000)Z_{cs}(4000) states exhibit a significant difference in width, these two resonances may originate from the same channel, the SS-wave (DsDˉ+DsDˉ)/2(D_{s}\bar{D}^{*}+D_{s}^{*}\bar{D})/\sqrt{2}. Additionally, we find two resonances in the SS-wave DsDˉD_s^*\bar{D}^* channel, corresponding to the Zcs(4123)Z_{cs}(4123) and Zcs(4220)Z_{cs}(4220) states that await experimental confirmation.

Keywords

Cite

@article{arxiv.2305.15787,
  title  = {$Z_{cs}$, $Z_c$ and $Z_b$ states under the complex scaling method},
  author = {Jian-Bo Cheng and Bo-Lin Huang and Zi-Yang Lin and Shi-Lin Zhu},
  journal= {arXiv preprint arXiv:2305.15787},
  year   = {2023}
}

Comments

10 pages, 5 figures, 4 tables