I=2 ππ S-wave scattering phase shift from lattice QCD

Abstract

The π + π + s -wave scattering phase shift is determined below the inelastic threshold using lattice QCD. Calculations were performed at a pion mass of m π ∼ 390     MeV with an anisotropic n f = 2 + 1 clover fermion discretization in four lattice volumes, with spatial extent L ∼ 2.0 , 2.5, 3.0 and 3.9 fm, and with a lattice spacing of b s ∼ 0.123     fm in the spatial direction and b t ∼ b s / 3.5 in the time direction. The phase shift is determined from the energy eigenvalues of π + π + systems with both zero and nonzero total momentum in the lattice volume using Lüscher's method. Our calculations are precise enough to allow for a determination of the threshold scattering parameters, the scattering length a , the effective range r , and the shape parameter P , in this channel and to examine the prediction of two-flavor chiral perturbation theory: m 2 π a r = 3 + O ( m 2 π / Λ 2 χ ) . Chiral perturbation theory is used, with the lattice QCD results as input, to predict the scattering phase shift (and threshold parameters) at the physical pion mass. Our results are consistent with determinations from the Roy equations and with the existing experimental phase shift data.

Document Type

Article


Published version

Language

English

Publisher

American Physical Society

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Reproducció del document publicat a: https://doi.org/10.1103/PhysRevD.85.034505

Physical Review D, 2012, vol. 85, num. 3, p. 034505

https://doi.org/10.1103/PhysRevD.85.034505

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(c) American Physical Society, 2012