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Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$
In recent years, lattice determinations of non-perturbative quantities such as $f_K$ and $f_\pi$, which are relevant for $V_{us}$ and $V_{ud}$, have reached an impressive precision of $\mathcal{O}(1\%)$ or better. To make further progress, electromagnetic and strong isospin breaking effects must be...
Autores principales: | , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2021
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.22323/1.396.0110 http://cds.cern.ch/record/2799242 |
_version_ | 1780972527936339968 |
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author | Yong, Andrew Zhen Ning Boyle, Peter Di Carlo, Matteo Erben, Felix Gülpers, Vera Hansen, Maxwell T. Harris, Tim Hermansson-Truedsson, Nils Hodgson, Raoul Jüttner, Andreas Portelli, Antonin Richings, James |
author_facet | Yong, Andrew Zhen Ning Boyle, Peter Di Carlo, Matteo Erben, Felix Gülpers, Vera Hansen, Maxwell T. Harris, Tim Hermansson-Truedsson, Nils Hodgson, Raoul Jüttner, Andreas Portelli, Antonin Richings, James |
author_sort | Yong, Andrew Zhen Ning |
collection | CERN |
description | In recent years, lattice determinations of non-perturbative quantities such as $f_K$ and $f_\pi$, which are relevant for $V_{us}$ and $V_{ud}$, have reached an impressive precision of $\mathcal{O}(1\%)$ or better. To make further progress, electromagnetic and strong isospin breaking effects must be included in lattice QCD simulations.
We present the status of the RBC\&UKQCD lattice calculation of isospin-breaking corrections to light meson leptonic decays. This computation is performed in a (2+1)-flavor QCD simulation using Domain Wall Fermions with near-physical quark masses. The isospin-breaking effects are implemented via a perturbative expansion of the action in $\alpha$ and $(m_u-m_d)$. In this calculation, we work in the electro-quenched approximation and the photons are implemented in the Feynman gauge and $\text{QED}_\text{L}$ formulation. |
id | cern-2799242 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | cern-27992422023-03-14T07:51:35Zdoi:10.22323/1.396.0110http://cds.cern.ch/record/2799242engYong, Andrew Zhen NingBoyle, PeterDi Carlo, MatteoErben, FelixGülpers, VeraHansen, Maxwell T.Harris, TimHermansson-Truedsson, NilsHodgson, RaoulJüttner, AndreasPortelli, AntoninRichings, JamesNear Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$hep-latParticle Physics - LatticeIn recent years, lattice determinations of non-perturbative quantities such as $f_K$ and $f_\pi$, which are relevant for $V_{us}$ and $V_{ud}$, have reached an impressive precision of $\mathcal{O}(1\%)$ or better. To make further progress, electromagnetic and strong isospin breaking effects must be included in lattice QCD simulations. We present the status of the RBC\&UKQCD lattice calculation of isospin-breaking corrections to light meson leptonic decays. This computation is performed in a (2+1)-flavor QCD simulation using Domain Wall Fermions with near-physical quark masses. The isospin-breaking effects are implemented via a perturbative expansion of the action in $\alpha$ and $(m_u-m_d)$. In this calculation, we work in the electro-quenched approximation and the photons are implemented in the Feynman gauge and $\text{QED}_\text{L}$ formulation.In recent years, lattice determinations of non-perturbative quantities such as $f_K$ and $f_\pi$, which are relevant for $V_{us}$ and $V_{ud}$, have reached an impressive precision of $\mathcal{O}(1\%)$ or better. To make further progress, electromagnetic and strong isospin breaking effects must be included in lattice QCD simulations. We present the status of the RBC/UKQCD lattice calculation of isospin-breaking corrections to light meson leptonic decays. This computation is performed in a (2+1)-flavor QCD simulation using Domain Wall Fermions with near-physical quark masses. The isospin-breaking effects are implemented via a perturbative expansion of the action in $\alpha$ and $(m_u-m_d)$. In this calculation, we work in the electro-quenched approximation and the photons are implemented in the Feynman gauge and $\text{QED}_\text{L}$ formulation.arXiv:2112.11823oai:cds.cern.ch:27992422021-12-22 |
spellingShingle | hep-lat Particle Physics - Lattice Yong, Andrew Zhen Ning Boyle, Peter Di Carlo, Matteo Erben, Felix Gülpers, Vera Hansen, Maxwell T. Harris, Tim Hermansson-Truedsson, Nils Hodgson, Raoul Jüttner, Andreas Portelli, Antonin Richings, James Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$ |
title | Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$ |
title_full | Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$ |
title_fullStr | Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$ |
title_full_unstemmed | Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$ |
title_short | Near Physical Point Lattice Calculation of Isospin-Breaking Corrections to $K_{\ell2}/\pi_{\ell2}$ |
title_sort | near physical point lattice calculation of isospin-breaking corrections to $k_{\ell2}/\pi_{\ell2}$ |
topic | hep-lat Particle Physics - Lattice |
url | https://dx.doi.org/10.22323/1.396.0110 http://cds.cern.ch/record/2799242 |
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