Abstract

We present a calculation of the scalar, vector, and tensor form factors for the pion and kaon in lattice QCD. We use an ensemble of two degenerate light, a strange and a charm quark (${N}_{f}=2+1+1$) of maximally twisted mass fermions with clover improvement. The corresponding pion and kaon masses are about 265 MeV and 530 MeV, respectively. The calculation is done in both rest and boosted frames obtaining data for four-vector momentum transfer squared up to $\ensuremath{-}{q}^{2}=2.5\text{ }\text{ }{\mathrm{GeV}}^{2}$ for the pion and $3\text{ }\text{ }{\mathrm{GeV}}^{2}$ for the kaon. The excited-states effects are studied by analyzing six values of the source-sink time separation for the rest frame (1.12--2.23 fm) and for four values for the boosted frame (1.12--1.67 fm). The lattice data are renormalized nonperturbatively and the results for the scheme- and scale-dependent scalar and tensor form factors are presented in the $\overline{\mathrm{MS}}$ scheme at a scale of 2 GeV. We apply different parametrizations to describe ${q}^{2}$-dependence of the form factors to extract the scalar, vector, and tensor radii, as well as the tensor anomalous magnetic moment. We compare the pion and kaon form factors to study SU(3) flavor symmetry breaking effects. By combining the data for the vector and tensor form factors we also obtain the lowest moment of the densities of transversely polarized quarks in the impact parameter space. Finally, we give an estimate for the average transverse shift in the $y$ direction for polarized quarks in the $x$ direction.

Highlights

  • Quantum chromodynamics (QCD) is the theory that best describes the strong interaction

  • We present a calculation of the scalar, vector, and tensor form factors for the pion and kaon in lattice QCD

  • We present a calculation in lattice QCD of the scalar, vector and tensor form factors of the pion and kaon

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Summary

INTRODUCTION

Quantum chromodynamics (QCD) is the theory that best describes the strong interaction. Several studies exist using chiral perturbation theories and other phenomenological approaches [28–37], as well as, lattice calculations on the pion (vector) form factor We combine the lattice data on the vector and tensor form factors, to extract information on the transverse spin of the mesons under study. V and VI for the pion and the kaon form factors, respectively These sections include the parametrization of the q2 1⁄4 −Q2 dependence, results on the monopole masses, the tensor anomalous magnetic moment and the radii.

THEORETICAL AND LATTICE SETUP
RENORMALIZATION
EXTRACTION OF MATRIX ELEMENTS
Excited-states investigation
Parametrization of pion form factors
KAON FORM FACTORS
Parametrization of kaon form factors
SU(3) FLAVOR SYMMETRY BREAKING
VIII. TRANSVERSE SPIN OF THE PION AND KAON
Findings
SUMMARY AND CONCLUSIONS
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