Extending the LCSR method to the electromagnetic pion form factor at low momenta using QCD renormalization-group summation
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| Format: | Preprint |
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2025
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| _version_ | 1866915689030221824 |
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| author | Ayala, Cesar Mikhailov, S. V. Pimikov, A. V. |
| author_facet | Ayala, Cesar Mikhailov, S. V. Pimikov, A. V. |
| contents | We obtain the electromagnetic pion form factor (emFF) $F_π$ for spacelike mid-range of momentum transfer in QCD. We use renormalization group (RG) summation within the light cone sum rules (LCSRs) to obtain the QCD radiative corrections to the $F_π$ and involve contributions of the leading twist 2 and,
twists 4, 6. The additional conditions to apply here this RG summation are discussed in details. The strong coupling constants in this approach are free of Landau singularities, which allows one to go down to the lower transferred momentum $Q^2$. The prediction of the calculations performed reproduces the experimental data below/around $Q^2= 1$~GeV$^2$ significantly better than analogous predictions based on a fixed-order power-series expansion in the standard QCD. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2505_18349 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Extending the LCSR method to the electromagnetic pion form factor at low momenta using QCD renormalization-group summation Ayala, Cesar Mikhailov, S. V. Pimikov, A. V. High Energy Physics - Phenomenology We obtain the electromagnetic pion form factor (emFF) $F_π$ for spacelike mid-range of momentum transfer in QCD. We use renormalization group (RG) summation within the light cone sum rules (LCSRs) to obtain the QCD radiative corrections to the $F_π$ and involve contributions of the leading twist 2 and, twists 4, 6. The additional conditions to apply here this RG summation are discussed in details. The strong coupling constants in this approach are free of Landau singularities, which allows one to go down to the lower transferred momentum $Q^2$. The prediction of the calculations performed reproduces the experimental data below/around $Q^2= 1$~GeV$^2$ significantly better than analogous predictions based on a fixed-order power-series expansion in the standard QCD. |
| title | Extending the LCSR method to the electromagnetic pion form factor at low momenta using QCD renormalization-group summation |
| topic | High Energy Physics - Phenomenology |
| url | https://arxiv.org/abs/2505.18349 |