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Bottomonium in the plasma: Lattice results

G.E. Bruno, Gert Aarts Orcid Logo, Chris Allton, Wynne Evans, Pietro Giudice, Tim Harris, Aoife Kelly, Seyong Kim, Maria Paola Lombardo, Sinead Ryan, Jon-Ivar Skullerud, G. Chiodini, P. Colangelo, C. Corianò, D. Creanza, F. De Fazio, E. Nappi

EPJ Web of Conferences, Volume: "80", Start page: 00029

Swansea University Author: Gert Aarts Orcid Logo

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Abstract

We present results on the heavy quarkonium spectrum and spectral functions obtained by performing large-scale simulations of QCD for temperatures ranging from about 100 to 500 MeV, in the same range as those explored by LHC experiments. We discuss our method and perspectives for further improvements...

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Published in: EPJ Web of Conferences
ISSN: 2100-014X
Published: 2014
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URI: https://cronfa.swan.ac.uk/Record/cronfa22563
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first_indexed 2015-07-21T11:25:43Z
last_indexed 2018-02-09T05:00:50Z
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spelling 2015-07-21T11:29:13.8298016 v2 22563 2015-07-21 Bottomonium in the plasma: Lattice results 1ba0dad382dfe18348ec32fc65f3f3de 0000-0002-6038-3782 Gert Aarts Gert Aarts true false 2015-07-21 SPH We present results on the heavy quarkonium spectrum and spectral functions obtained by performing large-scale simulations of QCD for temperatures ranging from about 100 to 500 MeV, in the same range as those explored by LHC experiments. We discuss our method and perspectives for further improvements towards the goal of full control over the many systematic uncertainties of these studies. Conference Paper/Proceeding/Abstract EPJ Web of Conferences "80" 00029 2100-014X 30 11 2014 2014-11-30 10.1051/epjconf/20148000029 http://inspirehep.net/record/1331414 @articleAarts:2014goa, author = "Aarts, Gert and Allton, Chris and Evans, Wynne and Giudice, Pietro and Harris, Tim and others", title = "Bottomonium in the plasma: lattice results", journal = "EPJ Web Conf.", volume = "80", pages = "00029", doi = "10.1051/epjconf/20148000029", year = "2014", eprint = "1411.7580", archivePrefix = "arXiv", primaryClass = "hep-lat", SLACcitation = "%%CITATION = ARXIV:1411.7580;%%", COLLEGE NANME Physics COLLEGE CODE SPH Swansea University 2015-07-21T11:29:13.8298016 2015-07-21T10:14:34.5814269 Faculty of Science and Engineering School of Biosciences, Geography and Physics - Physics G.E. Bruno 1 Gert Aarts 0000-0002-6038-3782 2 Chris Allton 3 Wynne Evans 4 Pietro Giudice 5 Tim Harris 6 Aoife Kelly 7 Seyong Kim 8 Maria Paola Lombardo 9 Sinead Ryan 10 Jon-Ivar Skullerud 11 G. Chiodini 12 P. Colangelo 13 C. Corianò 14 D. Creanza 15 F. De Fazio 16 E. Nappi 17
title Bottomonium in the plasma: Lattice results
spellingShingle Bottomonium in the plasma: Lattice results
Gert Aarts
title_short Bottomonium in the plasma: Lattice results
title_full Bottomonium in the plasma: Lattice results
title_fullStr Bottomonium in the plasma: Lattice results
title_full_unstemmed Bottomonium in the plasma: Lattice results
title_sort Bottomonium in the plasma: Lattice results
author_id_str_mv 1ba0dad382dfe18348ec32fc65f3f3de
author_id_fullname_str_mv 1ba0dad382dfe18348ec32fc65f3f3de_***_Gert Aarts
author Gert Aarts
author2 G.E. Bruno
Gert Aarts
Chris Allton
Wynne Evans
Pietro Giudice
Tim Harris
Aoife Kelly
Seyong Kim
Maria Paola Lombardo
Sinead Ryan
Jon-Ivar Skullerud
G. Chiodini
P. Colangelo
C. Corianò
D. Creanza
F. De Fazio
E. Nappi
format Conference Paper/Proceeding/Abstract
container_title EPJ Web of Conferences
container_volume "80"
container_start_page 00029
publishDate 2014
institution Swansea University
issn 2100-014X
doi_str_mv 10.1051/epjconf/20148000029
college_str Faculty of Science and Engineering
hierarchytype
hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Biosciences, Geography and Physics - Physics{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Biosciences, Geography and Physics - Physics
url http://inspirehep.net/record/1331414
document_store_str 0
active_str 0
description We present results on the heavy quarkonium spectrum and spectral functions obtained by performing large-scale simulations of QCD for temperatures ranging from about 100 to 500 MeV, in the same range as those explored by LHC experiments. We discuss our method and perspectives for further improvements towards the goal of full control over the many systematic uncertainties of these studies.
published_date 2014-11-30T03:26:41Z
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score 11.012678