Thermal lattice QCD results from the FASTSUM collaboration

Fuente: arXiv
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Main Authors: Allton, Chris, Aarts, Gert, Anwar, M. Naeem, Bignell, Ryan, Burns, Timothy J., García-Mascaraque, Sergio Chaves, Hands, Simon, Jäger, Benjamin, Kim, Seyong, Lombardo, Maria Paola, Page, Benjamin, Ryan, Sínead, Skullerud, Jon-Ivar, Smecca, Antonio, Spriggs, Thomas
Format: Preprint
Published: 2024
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author Allton, Chris
Aarts, Gert
Anwar, M. Naeem
Bignell, Ryan
Burns, Timothy J.
García-Mascaraque, Sergio Chaves
Hands, Simon
Jäger, Benjamin
Kim, Seyong
Lombardo, Maria Paola
Page, Benjamin
Ryan, Sínead
Skullerud, Jon-Ivar
Smecca, Antonio
Spriggs, Thomas
author_facet Allton, Chris
Aarts, Gert
Anwar, M. Naeem
Bignell, Ryan
Burns, Timothy J.
García-Mascaraque, Sergio Chaves
Hands, Simon
Jäger, Benjamin
Kim, Seyong
Lombardo, Maria Paola
Page, Benjamin
Ryan, Sínead
Skullerud, Jon-Ivar
Smecca, Antonio
Spriggs, Thomas
contents The FASTSUM Collaboration has developed a comprehensive research programme in thermal lattice QCD using 2+1 flavour ensembles. We review our recent hadron spectrum analyses of open charm mesons and charm baryons at non-zero temperature. We also detail our determination of the interquark potential in the bottomonium system using NRQCD quarks. All of our work uses anisotropic lattices where the temporal lattice spacing is considerably finer than the spatial one allowing better resolution of temporal correlation functions.
format Preprint
id arxiv_https___arxiv_org_abs_2411_15937
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Thermal lattice QCD results from the FASTSUM collaboration
Allton, Chris
Aarts, Gert
Anwar, M. Naeem
Bignell, Ryan
Burns, Timothy J.
García-Mascaraque, Sergio Chaves
Hands, Simon
Jäger, Benjamin
Kim, Seyong
Lombardo, Maria Paola
Page, Benjamin
Ryan, Sínead
Skullerud, Jon-Ivar
Smecca, Antonio
Spriggs, Thomas
High Energy Physics - Lattice
The FASTSUM Collaboration has developed a comprehensive research programme in thermal lattice QCD using 2+1 flavour ensembles. We review our recent hadron spectrum analyses of open charm mesons and charm baryons at non-zero temperature. We also detail our determination of the interquark potential in the bottomonium system using NRQCD quarks. All of our work uses anisotropic lattices where the temporal lattice spacing is considerably finer than the spatial one allowing better resolution of temporal correlation functions.
title Thermal lattice QCD results from the FASTSUM collaboration
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2411.15937