arXiv · 1607.07093
Coupled-Channel $Dπ$, $Dη$ and $D_{s}\bar{K}$ Scattering from Lattice QCD
Abstract
We present the first lattice QCD study of coupled-channel $Dπ$, $Dη$ and $D_{s}\bar{K}$ scattering in isospin-1/2 in three partial waves. Using distillation, we compute matrices of correlation functions with bases of operators capable of resolving both meson and meson-meson contributions to the spectrum. These correlation matrices are analysed using a variational approach to extract the finite-volume energy eigenstates. Utilising Lüscher's method and its extensions, we constrain scattering amplitudes in $S$, $P$ and $D$-wave as a function of energy. By analytically continuing the scattering amplitudes to complex energies, we investigate the $S$-matrix singularities. Working at $m_π\approx 391$ MeV, we find a pole corresponding to a $J^{P} = 0^{+}$ near-threshold bound state with a large coupling to $Dπ$. We also find a deeply bound $J^{P} = 1^{-}$ state, and evidence for a $J^{P} = 2^{+}$ narrow resonance coupled predominantly to $Dπ$. Elastic $Dπ$ scattering in the isospin-$3/2$ channel is studied and we find a weakly repulsive interaction in $S$-wave.
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Graham Moir, Michael Peardon, Sinéad M. Ryan, Christopher E. Thomas, David J. Wilson. 2016-10-12. Coupled-Channel $Dπ$, $Dη$ and $D_{s}\bar{K}$ Scattering from Lattice QCD. https://doi.org/10.1007/jhep10(2016)011
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