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@INPROCEEDINGS{Ammer:916813,
      author       = {Ammer, Maximilian and Durr, Stephan},
      title        = {{S}tout-smearing, gradient flow and $c_{\text{{SW}}}$ at
                      one loop order},
      volume       = {396},
      publisher    = {Sissa Medialab Trieste, Italy},
      reportid     = {FZJ-2023-00116},
      pages        = {407},
      year         = {2022},
      note         = {7 pages, 1 figure, talk given at the 38th International
                      Symposium on Lattice Field Theory (LATTICE2021), 26th-30th
                      July 2021, Zoom/Gather@Massachusetts Institute of
                      Technology},
      comment      = {Proceedings of The 38th International Symposium on Lattice
                      Field Theory — PoS(LATTICE2021) - Sissa Medialab Trieste,
                      Italy, 2022. - ISBN - doi:10.22323/1.396.0407},
      booktitle     = {Proceedings of The 38th International
                       Symposium on Lattice Field Theory —
                       PoS(LATTICE2021) - Sissa Medialab
                       Trieste, Italy, 2022. - ISBN -
                       doi:10.22323/1.396.0407},
      abstract     = {The one-loop determination of the coefficient $c_\text{SW}$
                      of the Wilson quark action has been useful to push the
                      leading cut-off effects for on-shell quantities to
                      $\mathcal{O}(\alpha^2 a)$ and, in conjunction with
                      non-perturbative determinations of $c_\text{SW}$, to
                      $\mathcal{O}(a^2)$, as long as no link-smearing is employed.
                      These days it is common practice to include some overall
                      link-smearing into the definition of the fermion action.
                      Unfortunately, in this situation only the tree-level value
                      $c_\text{SW}^{(0)}=1$ is known, and cut-off effects start at
                      $\mathcal{O}(\alpha a)$. We present some general techniques
                      for calculating one loop quantities in lattice perturbation
                      theory which continue to be useful for smeared-link fermion
                      actions. Specifically, we discuss the application to the
                      1-loop improvement coefficient $c_\text{SW}^{(1)}$ for
                      overall stout-smeared Wilson fermions.},
      month         = {Jul},
      date          = {2021-07-26},
      organization  = {38th International Symposium on
                       Lattice Field Theory, MIT, Boston
                       (virtual) (USA), 26 Jul 2021 - 30 Jul
                       2021},
      cin          = {JSC},
      cid          = {I:(DE-Juel1)JSC-20090406},
      pnm          = {5111 - Domain-Specific Simulation $\&$ Data Life Cycle Labs
                      (SDLs) and Research Groups (POF4-511)},
      pid          = {G:(DE-HGF)POF4-5111},
      typ          = {PUB:(DE-HGF)8 / PUB:(DE-HGF)7},
      eprint       = {2109.14562},
      howpublished = {arXiv:2109.14562},
      archivePrefix = {arXiv},
      SLACcitation = {$\%\%CITATION$ = $arXiv:2109.14562;\%\%$},
      doi          = {10.22323/1.396.0407},
      url          = {https://juser.fz-juelich.de/record/916813},
}