Rigorous Roy-Steiner equation analysis of $ÏK$ scattering at unphysical quark masses
Rigorous Roy-Steiner equation analysis of $ÏK$ scattering at unphysical quark masses
We perform a rigorous analysis of the $ÏK$ scattering at an unphysical pion mass 391 MeV using the Roy-Steiner equations, which satisfy unitarity, analyticity and crossing symmetry, for the first time. Stable solutions of the Roy-Steiner equations with different quantum numbers of isospin and angular momentum are obtained in the elastic energy region, by taking inputs from the $ÏK$ lattice data in the inelastic region, the lattice data from the crossed $ÏÏ\to K\bar{K}$ channels, the masses of $f_0(500)$ and $K^*$ at the same pion mass from previous study, and the Regge model. Predictions on the elastic $ÏK$ scattering phase shifts and the $K_0^*(700)$ pole content are made. Contrary to the virtual pole scenario obtained using the $K$-matrix method in the literature, we find that lightest strange scalar meson $K_0^*(700)$ remains a broad resonance at $m_Ï=391$ MeV. The cross-channel dynamics is found to play a crucial role in deriving the proper pole position.
Xiong-Hui Cao、Feng-Kun Guo、Zhi-Hui Guo、Qu-Zhi Li
物理学
Xiong-Hui Cao,Feng-Kun Guo,Zhi-Hui Guo,Qu-Zhi Li.Rigorous Roy-Steiner equation analysis of $ÏK$ scattering at unphysical quark masses[EB/OL].(2025-07-31)[2025-08-07].https://arxiv.org/abs/2412.03374.点此复制
评论