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Roy equation analyses of ππ scatterings at unphysical pion masses

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arxiv 2303.02596 v3 pith:7S5VKK2V submitted 2023-03-05 hep-ph hep-lat

Roy equation analyses of ππ scatterings at unphysical pion masses

classification hep-ph hep-lat
keywords equationmassespionlargeunphysicalboundequationslattice
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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An extended Roy equation including a bound state pole is used to study $\pi\pi$ scatterings at unphysical large pion masses when $\sigma$ becomes a bound state in one situation and stays as a broad resonance in the other case. The coupled integral equations at large pion masses are solved by taking the lattice driving terms and the Regge amplitudes as inputs. Relying on the solutions of Roy equations that respect unitarity, analyticity and crossing symmetry, we give predictions to the phase shifts with $IJ=00,11,20$ in the elastic energy region. We then perform analytic continuation into the complex $s$ plane to search for various poles, all of which are inside the validity domain of the Roy equation. This is the first time that lattice data at unphysical large pion masses are analyzed within the rigorous Roy equation method.

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Cited by 2 Pith papers

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  2. Lattice QCD study of the $K^*(892)$ resonance at the physical point

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    Lattice QCD yields the K*(892) resonance pole at physical pion mass and continuum limit as 883(22) - i20(13) MeV, in agreement with experiment.