Instanton dynamics in finite temperature QCD via holography

We investigate instantons in finite temperature QCD via Witten's holographic QCD. To study the deconfinement phase, we use the setup proposed in [1]. We find that the sizes of the instantons are stabilized at certain values both in the confinement and deconfinement phases. This agrees with the...

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Main Authors: Masanori Hanada, Yoshinori Matsuo, Takeshi Morita
Format: Article
Language:English
Published: Elsevier 2015-10-01
Series:Nuclear Physics B
Online Access:http://www.sciencedirect.com/science/article/pii/S055032131500303X
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spelling doaj-97391087e17b49e7b3b9acb67ea0ddb32020-11-24T23:53:20ZengElsevierNuclear Physics B0550-32131873-15622015-10-01899C63165010.1016/j.nuclphysb.2015.08.018Instanton dynamics in finite temperature QCD via holographyMasanori Hanada0Yoshinori Matsuo1Takeshi Morita2Yukawa Institute for Theoretical Physics, Kyoto University, Kitashirakawa-Oiwake-cho, Sakyo-ku, Kyoto 606-8502, JapanCrete Center for Theoretical Physics, Department of Physics, University of Crete, 71003 Heraklion, GreeceDepartment of Physics, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, JapanWe investigate instantons in finite temperature QCD via Witten's holographic QCD. To study the deconfinement phase, we use the setup proposed in [1]. We find that the sizes of the instantons are stabilized at certain values both in the confinement and deconfinement phases. This agrees with the numerical result in the lattice gauge theory. Besides we find that the gravity duals of the large and small instantons in the deconfinement phase have different topologies. We also argue that the fluctuation of the topological charges is large in confinement phase while it is exponentially suppressed in deconfinement phase, and a continuous transition occurs at the Gross–Witten–Wadia (GWW) point. It would be difficult to observe the counterpart of this transition in lattice QCD, since the GWW point in QCD may stay at an unstable branch.http://www.sciencedirect.com/science/article/pii/S055032131500303X
collection DOAJ
language English
format Article
sources DOAJ
author Masanori Hanada
Yoshinori Matsuo
Takeshi Morita
spellingShingle Masanori Hanada
Yoshinori Matsuo
Takeshi Morita
Instanton dynamics in finite temperature QCD via holography
Nuclear Physics B
author_facet Masanori Hanada
Yoshinori Matsuo
Takeshi Morita
author_sort Masanori Hanada
title Instanton dynamics in finite temperature QCD via holography
title_short Instanton dynamics in finite temperature QCD via holography
title_full Instanton dynamics in finite temperature QCD via holography
title_fullStr Instanton dynamics in finite temperature QCD via holography
title_full_unstemmed Instanton dynamics in finite temperature QCD via holography
title_sort instanton dynamics in finite temperature qcd via holography
publisher Elsevier
series Nuclear Physics B
issn 0550-3213
1873-1562
publishDate 2015-10-01
description We investigate instantons in finite temperature QCD via Witten's holographic QCD. To study the deconfinement phase, we use the setup proposed in [1]. We find that the sizes of the instantons are stabilized at certain values both in the confinement and deconfinement phases. This agrees with the numerical result in the lattice gauge theory. Besides we find that the gravity duals of the large and small instantons in the deconfinement phase have different topologies. We also argue that the fluctuation of the topological charges is large in confinement phase while it is exponentially suppressed in deconfinement phase, and a continuous transition occurs at the Gross–Witten–Wadia (GWW) point. It would be difficult to observe the counterpart of this transition in lattice QCD, since the GWW point in QCD may stay at an unstable branch.
url http://www.sciencedirect.com/science/article/pii/S055032131500303X
work_keys_str_mv AT masanorihanada instantondynamicsinfinitetemperatureqcdviaholography
AT yoshinorimatsuo instantondynamicsinfinitetemperatureqcdviaholography
AT takeshimorita instantondynamicsinfinitetemperatureqcdviaholography
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