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A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration
The ALPHA collaboration aims to determine $\alpha_s(m_Z)$ with a total error below the percent level. A further step towards this goal can be taken by combining results from the recent simulations of 2+1-flavour QCD by the CLS initiative with a number of tools developed over the years: renormalized...
Autores principales: | , , , , , |
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Lenguaje: | eng |
Publicado: |
SISSA
2015
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.22323/1.251.0248 http://cds.cern.ch/record/2103860 |
_version_ | 1780948768340836352 |
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author | Dalla Brida, Mattia Fritzsch, Patrick Korzec, Tomasz Ramos, Alberto Sint, Stefan Sommer, Rainer |
author_facet | Dalla Brida, Mattia Fritzsch, Patrick Korzec, Tomasz Ramos, Alberto Sint, Stefan Sommer, Rainer |
author_sort | Dalla Brida, Mattia |
collection | CERN |
description | The ALPHA collaboration aims to determine $\alpha_s(m_Z)$ with a total error below the percent level. A further step towards this goal can be taken by combining results from the recent simulations of 2+1-flavour QCD by the CLS initiative with a number of tools developed over the years: renormalized couplings in finite volume schemes, recursive finite size techniques, two-loop renormalized perturbation theory and the (improved) gradient flow on the lattice. We sketch the strategy, which involves both the standard SF coupling in the high energy regime and a gradient flow coupling at low energies. This implies the need for matching both schemes at an intermediate switching scale, $L_{\rm swi}$, which we choose roughly in the range 2-4 GeV. In this contribution we present a preliminary result for this matching procedure, and we then focus on our almost final results for the scale evolution of the SF coupling from $L_{\rm swi}$ towards the perturbative regime, where we extract the $N_{\rm f} = 3$ ${\Lambda}$-parameter, ${\Lambda}_{\overline{\rm MS}}^{N_{\rm f}=3}$, in units of $L_{\rm swi}$ . Connecting $L_{\rm swi}$ and thus the ${\Lambda}$-parameter to a hadronic scale such as $F_K$ requires 2 further ingredients: first, the connection of $L_{\rm swi}$ to $L_{\rm max}$ using a few steps with the step-scaling function of the gradient flow coupling, and, second, the continuum extrapolation of $L_{\rm max} F_K$. |
id | cern-2103860 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2015 |
publisher | SISSA |
record_format | invenio |
spelling | cern-21038602023-03-14T19:34:47Zdoi:10.22323/1.251.0248http://cds.cern.ch/record/2103860engDalla Brida, MattiaFritzsch, PatrickKorzec, TomaszRamos, AlbertoSint, StefanSommer, RainerA status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaborationhep-latParticle Physics - LatticeThe ALPHA collaboration aims to determine $\alpha_s(m_Z)$ with a total error below the percent level. A further step towards this goal can be taken by combining results from the recent simulations of 2+1-flavour QCD by the CLS initiative with a number of tools developed over the years: renormalized couplings in finite volume schemes, recursive finite size techniques, two-loop renormalized perturbation theory and the (improved) gradient flow on the lattice. We sketch the strategy, which involves both the standard SF coupling in the high energy regime and a gradient flow coupling at low energies. This implies the need for matching both schemes at an intermediate switching scale, $L_{\rm swi}$, which we choose roughly in the range 2-4 GeV. In this contribution we present a preliminary result for this matching procedure, and we then focus on our almost final results for the scale evolution of the SF coupling from $L_{\rm swi}$ towards the perturbative regime, where we extract the $N_{\rm f} = 3$ ${\Lambda}$-parameter, ${\Lambda}_{\overline{\rm MS}}^{N_{\rm f}=3}$, in units of $L_{\rm swi}$ . Connecting $L_{\rm swi}$ and thus the ${\Lambda}$-parameter to a hadronic scale such as $F_K$ requires 2 further ingredients: first, the connection of $L_{\rm swi}$ to $L_{\rm max}$ using a few steps with the step-scaling function of the gradient flow coupling, and, second, the continuum extrapolation of $L_{\rm max} F_K$.SISSAarXiv:1511.05831TCDMATH-15--11DESY-15-218CERN-PH-TH-2015-269WUB-15-08HU-EP-15-54IFT-UAM-CSIC-15-122TCDMATH 15--11DESY 15-218CERN-PH-TH-2015-269WUB-15-08HU-EP-15-54IFT-UAM-CSIC-15-122oai:cds.cern.ch:21038602015-11-18 |
spellingShingle | hep-lat Particle Physics - Lattice Dalla Brida, Mattia Fritzsch, Patrick Korzec, Tomasz Ramos, Alberto Sint, Stefan Sommer, Rainer A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration |
title | A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration |
title_full | A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration |
title_fullStr | A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration |
title_full_unstemmed | A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration |
title_short | A status update on the determination of $\Lambda^{N_f=3}_{\overline{\rm MS}}$ by the ALPHA collaboration |
title_sort | status update on the determination of $\lambda^{n_f=3}_{\overline{\rm ms}}$ by the alpha collaboration |
topic | hep-lat Particle Physics - Lattice |
url | https://dx.doi.org/10.22323/1.251.0248 http://cds.cern.ch/record/2103860 |
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