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Lattice QCD calculation of the pion charge radius using a model-independent method

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arxiv 1911.04064 v3 pith:TS26UW7Z submitted 2019-11-11 hep-lat hep-exhep-ph

classification hep-lathep-exhep-ph
keywords methodchargelanglepionradiusranglestatisticalcalculation
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We use a method to calculate the hadron's charge radius without model-dependent momentum extrapolations. The method does not require the additional quark propagator inversions on the twisted boundary conditions or the computation of the momentum derivatives of quark propagators and thus is easy to implement. We apply this method to the calculation of pion charge radius $\langle r_\pi^2\rangle$. For comparison, we also determine $\langle r_\pi^2\rangle$ with the traditional approach of computing the slope of the form factors. The new method produces results consistent with those from the traditional method and with statistical errors 1.5-1.9 times smaller. For the four gauge ensembles at the physical pion masses, the statistical errors of $\langle r_\pi^2\rangle$ range from 2.1% to 4.6% by using $\lesssim50$ configurations. For the ensemble at $m_\pi\approx 340$ MeV, the statistical uncertainty is even reduced to a sub-percent level.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Dispersive analysis of the pion vector form factor without zeros

    hep-ph 2025-01 conditional novelty 6.0 of 10

    Imposing the absence of complex zeros in the pion vector form factor reduces the dominant systematic uncertainty and makes the tensions between CMD-3 and other e+e- data sets appear sharper, including in the pion char...

  2. Calculation of meson charge radii using model-independent method in the PACS10 configuration

    hep-lat 2024-12 conditional novelty 4.0 of 10

    The PACS collaboration obtains preliminary charge radii of 0.423(10) fm^2 for pi+ and 0.373(4) fm^2 for K+ at a single lattice spacing, consistent with experiment.

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