Hadronic spectrum calculations in the quark-gluon plasma

Gert Aarts, Chris Allton, Jonas Glesaaen, Simon Hands, Benjamin Jäger, Jonivar Skullerud

Research output: Contribution to journalConference articleResearchpeer-review

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Abstract

A status report on FASTSUM's programme of computing spectral quantities in thermal QCD, using anisotropic lattice simulations with $N_f=2+1$ flavours of Wilson fermions, is given. We provide in particular some details of the next generation of ensembles, which is currently being finalised, and give preliminary results for susceptibilities and baryonic correlators on those ensembles.
Original languageEnglish
JournalP o S - Proceedings of Science
Volume334
Number of pages7
ISSN1824-8039
DOIs
Publication statusPublished - 19. Dec 2018
Event36th Annual International Symposium on Lattice Field Theory - Michigan State University, East Lansing, United States
Duration: 22. Jul 201828. Jul 2018

Conference

Conference36th Annual International Symposium on Lattice Field Theory
LocationMichigan State University
CountryUnited States
CityEast Lansing
Period22/07/201828/07/2018

Fingerprint

correlators
quantum chromodynamics
fermions
quarks
magnetic permeability
simulation

Keywords

  • hep-lat

Cite this

Aarts, Gert ; Allton, Chris ; Glesaaen, Jonas ; Hands, Simon ; Jäger, Benjamin ; Skullerud, Jonivar. / Hadronic spectrum calculations in the quark-gluon plasma. In: P o S - Proceedings of Science. 2018 ; Vol. 334.
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Hadronic spectrum calculations in the quark-gluon plasma. / Aarts, Gert; Allton, Chris; Glesaaen, Jonas; Hands, Simon; Jäger, Benjamin; Skullerud, Jonivar.

In: P o S - Proceedings of Science, Vol. 334, 19.12.2018.

Research output: Contribution to journalConference articleResearchpeer-review

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T1 - Hadronic spectrum calculations in the quark-gluon plasma

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AU - Skullerud, Jonivar

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AB - A status report on FASTSUM's programme of computing spectral quantities in thermal QCD, using anisotropic lattice simulations with $N_f=2+1$ flavours of Wilson fermions, is given. We provide in particular some details of the next generation of ensembles, which is currently being finalised, and give preliminary results for susceptibilities and baryonic correlators on those ensembles.

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