We employ the chirally rotated Schr"odinger functional ($chi$SF) to study two-point fermion bilinear correlation functions used in the determination of $Z_A,V,S,P,T$ on a series of well-tuned ensembles. The gauge configurations, which span renormalisation scales from 4 to 70~GeV, are generated with $N_ m f=3$ massless flavors and Schr"odinger Functional (SF) boundary conditions. Valence quarks are computed with $chi$SF boundary conditions. We show preliminary results on the tuning of the $chi$SF Symanzik coefficient $z_f$ and the scaling of the axial current normalization $Z_ m A$. Moreover we carry out a detailed comparison with the expectations from one-loop perturbation theory. Finally we outline how automatically $mathrmO(a)$-improved $B_ m K$ matrix elements, including BSM contributions, can be computed in a $chi$SF renormalization scheme.
Campos, I., Dalla Brida, M., DE DIVITIIS, G.m., Lytle, A., Papinutto, M., Vladikas, A. (2019). $χ$SF near the electroweak scale. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? 37th International Symposium on Lattice Field Theory.
$χ$SF near the electroweak scale
Giulia Maria de Divitiis;
2019-10-04
Abstract
We employ the chirally rotated Schr"odinger functional ($chi$SF) to study two-point fermion bilinear correlation functions used in the determination of $Z_A,V,S,P,T$ on a series of well-tuned ensembles. The gauge configurations, which span renormalisation scales from 4 to 70~GeV, are generated with $N_ m f=3$ massless flavors and Schr"odinger Functional (SF) boundary conditions. Valence quarks are computed with $chi$SF boundary conditions. We show preliminary results on the tuning of the $chi$SF Symanzik coefficient $z_f$ and the scaling of the axial current normalization $Z_ m A$. Moreover we carry out a detailed comparison with the expectations from one-loop perturbation theory. Finally we outline how automatically $mathrmO(a)$-improved $B_ m K$ matrix elements, including BSM contributions, can be computed in a $chi$SF renormalization scheme.File | Dimensione | Formato | |
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