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The I=1 pion-pion scattering amplitude and timelike pion form factor from N-f=2+1 lattice QCD

机译:来自N-F = 2 + 1格QCD的I = 1孔散射幅度和时间尺寸π形式因子

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摘要

The elastic I = 1 p-wave pi pi scattering amplitude is calculated together with the isovector timelike pion form factor using lattice QCD with N-f = 2 + 1 dynamical quark flavors. Wilson clover ensembles generated by the Coordinated Lattice Simulations (CLS) initiative are employed at four lattice spacings down to a = 0.05 fm, several pion masses down to m(pi) = 200 MeV, and spatial volumes of extent L = 3.1-5.5 fm. The set of measurements on these ensembles, which is publicly available, enables an investigation of systematic errors due to the finite lattice spacing and spatial volume. The pi pi scattering amplitude is fit on each ensemble by a Breit-Wigner resonance lineshape, while the form factor is described better by a thrice-subtracted dispersion relation than the Gounaris-Sakurai parametrization. (C) 2018 The Author(s). Published by Elsevier B.V.
机译:弹性I = 1 p波PI PI散射幅散射幅度与使用晶格QCD使用N-F = 2 + 1动态夸克口味的晶格QCD计算。 由协调的晶格模拟(CLS)产生的威尔逊三叶草集合在四个晶格间距下使用,下降到= 0.05 fm,几粒肿块下降到m(pi)= 200 mev,以及范围的空间体积L = 3.1-5.5 fm 。 由于有限的晶格间距和空间体积,这些集合的测量集可以调查系统误差。 PI PI散射幅度通过Breit-Wigner谐振线φ符合每个集合,而形状因子比Gounaris-Sakurai参数化更好地描述。 (c)2018年作者。 由elsevier b.v出版。

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