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Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature / A.C. Petkou, J.L.F. Barbon, Adi Armoni

Journal of High Energy Physics, Volume: "06", Issue: 06, Pages: 058 - 058

Swansea University Author: Adi Armoni

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Abstract

Following Gubser, Klebanov and Polyakov [hep-th/0204051], we study strings in AdS black hole backgrounds. With respect to the pure AdS case, rotating strings are replaced by orbiting strings. We interpret these orbiting strings as CFT states of large spin similar to glueballs propagating through a g...

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Published in: Journal of High Energy Physics
ISSN: 1029-8479
Published: 2002
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URI: https://cronfa.swan.ac.uk/Record/cronfa28675
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first_indexed 2016-06-04T12:47:07Z
last_indexed 2018-02-09T05:13:02Z
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spelling 2016-06-04T06:08:32.7045208 v2 28675 2016-06-04 Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature 3f75faad0563a2d3b191191a2efee956 0000-0002-8105-0645 Adi Armoni Adi Armoni true false 2016-06-04 SPH Following Gubser, Klebanov and Polyakov [hep-th/0204051], we study strings in AdS black hole backgrounds. With respect to the pure AdS case, rotating strings are replaced by orbiting strings. We interpret these orbiting strings as CFT states of large spin similar to glueballs propagating through a gluon plasma. The energy and the spin of the orbiting string configurations are associated with the energy and the spin of states in the dual finite temperature N=4 SYM theory. We analyse in particular the limiting cases of short and long strings. Moreover, we perform a thermodynamic study of the angular momentum transfer from the glueball to the plasma by considering string orbits around rotating AdS black holes. We find that standard expectations, such as the complete thermal dissociation of the glueball, are borne out after subtle properties of rotating AdS black holes are taken into Journal Article Journal of High Energy Physics "06" 06 058 058 1029-8479 31 5 2002 2002-05-31 10.1088/1126-6708/2002/06/058 http://inspirehep.net/record/587340 COLLEGE NANME Physics COLLEGE CODE SPH Swansea University 2016-06-04T06:08:32.7045208 2016-06-04T06:08:32.5173196 College of Science Physics A.C. Petkou 1 J.L.F. Barbon 2 Adi Armoni 0000-0002-8105-0645 3
title Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
spellingShingle Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
Adi, Armoni
title_short Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
title_full Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
title_fullStr Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
title_full_unstemmed Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
title_sort Orbiting Strings in AdS Black Holes and Script N = 4 SYM at Finite Temperature
author_id_str_mv 3f75faad0563a2d3b191191a2efee956
author_id_fullname_str_mv 3f75faad0563a2d3b191191a2efee956_***_Adi, Armoni
author Adi, Armoni
author2 A.C. Petkou
J.L.F. Barbon
Adi Armoni
format Journal article
container_title Journal of High Energy Physics
container_volume "06"
container_issue 06
container_start_page 058
publishDate 2002
institution Swansea University
issn 1029-8479
doi_str_mv 10.1088/1126-6708/2002/06/058
college_str College of Science
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hierarchy_top_id collegeofscience
hierarchy_top_title College of Science
hierarchy_parent_id collegeofscience
hierarchy_parent_title College of Science
department_str Physics{{{_:::_}}}College of Science{{{_:::_}}}Physics
url http://inspirehep.net/record/587340
document_store_str 0
active_str 0
description Following Gubser, Klebanov and Polyakov [hep-th/0204051], we study strings in AdS black hole backgrounds. With respect to the pure AdS case, rotating strings are replaced by orbiting strings. We interpret these orbiting strings as CFT states of large spin similar to glueballs propagating through a gluon plasma. The energy and the spin of the orbiting string configurations are associated with the energy and the spin of states in the dual finite temperature N=4 SYM theory. We analyse in particular the limiting cases of short and long strings. Moreover, we perform a thermodynamic study of the angular momentum transfer from the glueball to the plasma by considering string orbits around rotating AdS black holes. We find that standard expectations, such as the complete thermal dissociation of the glueball, are borne out after subtle properties of rotating AdS black holes are taken into
published_date 2002-05-31T03:43:49Z
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score 10.823442