We study the renormalization group (RG) running of the nonsinglet tensor operator, for Nf=3 QCD with Wilson fermions in a mixed action setup, with standard Schrödinger functional (SF) boundary conditions for sea quarks and chirally rotated Schrödinger functional (χSF) boundary conditions for valence quarks. Based on a recursive finite-size scaling technique we compute nonperturbatively the tensor step-scaling function for an energy range between a hadronic scale and an electroweak scale, above which perturbation theory may be safely applied. Our result is expressed as the RG-running factor TRGI/[T(μhad)]R, where the numerator is the scale independent (renormalization group invariant - RGI) tensor operator and the denominator is its renormalized counterpart at a hadronic scale μhad=233(8) MeV in a given scheme. We determine the step-scaling function in four distinct renormalization schemes. We also compute the renormalization parameters of these schemes at μhad which, combined with the RG-running factor, gives the scheme-independent quantity ZTRGI(g02) in four schemes and for a range of bare gauge couplings in which large volume hadronic matrix element simulations are performed by the CLS consortium in Nf=2+1 QCD. All four results are compatible and also agree with a recent determination based on a unitary setup for Wilson quarks with Schrödinger functional boundary conditions [arXiv:2309.04314]. This provides a strong universality test.

Campos Plasencia, I., Dalla Brida, M., de Divitiis, G.m., Lytle, A., Papinutto, M., Pirelli, L., et al. (2024). Nonperturbative running of the tensor operator for Nf =3 QCD from the chirally rotated Schrödinger functional. PHYSICAL REVIEW D, 109(5) [10.1103/physrevd.109.054511].

Nonperturbative running of the tensor operator for Nf =3 QCD from the chirally rotated Schrödinger functional

de Divitiis, Giulia Maria;Pirelli, Ludovica;
2024-01-01

Abstract

We study the renormalization group (RG) running of the nonsinglet tensor operator, for Nf=3 QCD with Wilson fermions in a mixed action setup, with standard Schrödinger functional (SF) boundary conditions for sea quarks and chirally rotated Schrödinger functional (χSF) boundary conditions for valence quarks. Based on a recursive finite-size scaling technique we compute nonperturbatively the tensor step-scaling function for an energy range between a hadronic scale and an electroweak scale, above which perturbation theory may be safely applied. Our result is expressed as the RG-running factor TRGI/[T(μhad)]R, where the numerator is the scale independent (renormalization group invariant - RGI) tensor operator and the denominator is its renormalized counterpart at a hadronic scale μhad=233(8) MeV in a given scheme. We determine the step-scaling function in four distinct renormalization schemes. We also compute the renormalization parameters of these schemes at μhad which, combined with the RG-running factor, gives the scheme-independent quantity ZTRGI(g02) in four schemes and for a range of bare gauge couplings in which large volume hadronic matrix element simulations are performed by the CLS consortium in Nf=2+1 QCD. All four results are compatible and also agree with a recent determination based on a unitary setup for Wilson quarks with Schrödinger functional boundary conditions [arXiv:2309.04314]. This provides a strong universality test.
2024
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/02
Settore PHYS-02/A - Fisica teorica delle interazioni fondamentali, modelli, metodi matematici e applicazioni
English
Con Impact Factor ISI
Lattice QCD
Campos Plasencia, I., Dalla Brida, M., de Divitiis, G.m., Lytle, A., Papinutto, M., Pirelli, L., et al. (2024). Nonperturbative running of the tensor operator for Nf =3 QCD from the chirally rotated Schrödinger functional. PHYSICAL REVIEW D, 109(5) [10.1103/physrevd.109.054511].
Campos Plasencia, I; Dalla Brida, M; de Divitiis, Gm; Lytle, A; Papinutto, M; Pirelli, L; Vladikas, A; Null, N
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/394803
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