2 research outputs found

    Isospin-1/2 DπD\pi scattering and the lightest D0∗D_0^\ast resonance from lattice QCD

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    Isospin-1/2 DπD\pi scattering amplitudes are computed using lattice QCD, working in a single volume of approximately (3.6  fm)3(3.6\; \mathrm{fm})^3 and with a light quark mass corresponding to mπ≈239m_\pi\approx239 MeV. The spectrum of the elastic DπD\pi energy region is computed yielding 20 energy levels. Using the L\"uscher finite-volume quantisation condition these energies are translated into constraints on the infinite volume scattering amplitudes. For the first time, we find a complex D0∗D_0^\ast resonance pole from lattice QCD, strongly coupled to the SS-wave DπD\pi channel, with a mass m≈2200m\approx 2200 MeV and a width Γ≈400\Gamma\approx400 MeV. Combined with earlier work investigating the Ds0∗D_{s0}^\ast, and D0∗D_0^\ast with heavier light quarks, similar couplings between each of these scalar states and their relevant meson-meson scattering channels are determined. The mass of the D0∗D_0^\ast is consistently found well below that of the Ds0∗D_{s0}^\ast, in contrast to the currently reported experimental result.Comment: 39 pages, 13 figure
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