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Author
dc.contributor.author
Fodor, Z 
Author
dc.contributor.author
Katz, SD 
Author
dc.contributor.author
Szabo, KK 
Author
dc.contributor.author
Toth, AI 
Availability Date
dc.date.accessioned
2020-08-07T06:57:25Z
Availability Date
dc.date.available
2020-08-07T06:57:25Z
Release
dc.date.issued
2005
uri
dc.identifier.uri
http://hdl.handle.net/10831/49406
Abstract
dc.description.abstract
We present numerical results on the static quark-anti-quark grand canonical potential in full QCD at nonvanishing temperature (T) and quark chemical potential (mu). Non-zero mu-s are reached by means of multiparameter reweighting. The dynamical staggered simulations were carried out for n(f) = 2 + 1 flavors with physical quark masses on 4 x 12(3) lattices.
Language
dc.language
Angol
Title
dc.title
Grand canonical potential for a static quark-anti-quark pair at mu not equal 0
Type
dc.type
folyóiratcikk
Date Change
dc.date.updated
2020-06-09T08:49:54Z
Note
dc.description.note
Admin megjegyzés-24930027 #JournalID1# Name: Nuclear Physics B Proceedings Supplements ISSN: 0920-5632 #JournalID2#
Scope
dc.format.page
508-510
Doi ID
dc.identifier.doi
10.1016/j.nuclphysbps.2004.11.127
Wos ID
dc.identifier.wos
000227264000113
ID Scopus
dc.identifier.scopus
12344250998
MTMT ID
dc.identifier.mtmt
1424583
abbreviated journal
dc.identifier.jabbrev
NUCL PHYS B-PROC SUPPL
Journal
dc.identifier.jtitle
NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS
Volume Number
dc.identifier.volume
140
Release Date
dc.description.issuedate
2005
department of Author
dc.contributor.institution
MTA-ELTE Elméleti Fizikai Kutatócsoport
department of Author
dc.contributor.institution
MTA Határon Túli Magyarok Titkársága
department of Author
dc.contributor.institution
MTA-ELTE Lendület Rácstérelméleti Kutatócsoport
department of Author
dc.contributor.institution
Elméleti Fizikai Tanszék
department of Author
dc.contributor.institution
Komplex Rendszerek Fizikája Tanszék
Author institution
dc.contributor.department
Elméleti Fizikai Tanszék


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Grand canonical potential for a static quark-anti-quark pair at mu not equal 0
 

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