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Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration

Detailed theoretical studies have shown that intense heavy-ion beams that will be generated at the future Facility for Antiprotons and Ion Research (FAIR) (Henning 2004 Nucl. Instrum. Methods B 214 211) at Darmstadt will be a very efficient tool to create high-energy-density (HED) states in matter i...

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Detalles Bibliográficos
Autores principales: Tahir, N A, Lomonosov, I V, Shutov, A, Udrea, S, Deutsch, C, Fortov, V E, Gryaznov, V, Hoffmann, Dieter H H, Jacobi, J, Kain, V, Kuster, M, Ni, P, Piriz, A R, Schmidt, R, Spiller, P, Varentsov, D, Zioutas, K
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1088/0305-4470/39/17/S70
http://cds.cern.ch/record/1002176
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author Tahir, N A
Lomonosov, I V
Shutov, A
Udrea, S
Deutsch, C
Fortov, V E
Gryaznov, V
Hoffmann, Dieter H H
Jacobi, J
Kain, V
Kuster, M
Ni, P
Piriz, A R
Schmidt, R
Spiller, P
Varentsov, D
Zioutas, K
author_facet Tahir, N A
Lomonosov, I V
Shutov, A
Udrea, S
Deutsch, C
Fortov, V E
Gryaznov, V
Hoffmann, Dieter H H
Jacobi, J
Kain, V
Kuster, M
Ni, P
Piriz, A R
Schmidt, R
Spiller, P
Varentsov, D
Zioutas, K
author_sort Tahir, N A
collection CERN
description Detailed theoretical studies have shown that intense heavy-ion beams that will be generated at the future Facility for Antiprotons and Ion Research (FAIR) (Henning 2004 Nucl. Instrum. Methods B 214 211) at Darmstadt will be a very efficient tool to create high-energy-density (HED) states in matter including strongly coupled plasmas. In this paper we show, with the help of two-dimensional numerical simulations, the interesting physical states that can be achieved considering different beam intensities using zinc as a test material. Another very interesting experiment that can be performed using the intense heavy-ion beam at FAIR will be generation of low-entropy compression of a test material such as hydrogen that is enclosed in a cylindrical shell of a high-Z material such as lead or gold. In such an experiment, one can study the problem of hydrogen metallization and the interiors of giant planets. Moreover, we discuss an interesting method to diagnose the HED matter that is at the centre of the Sun. We have also carried out simulations to study the damage caused by the full impact of the Large Hadron Collider (LHC) beam on a superconducting magnet. An interesting outcome of this study is that the LHC beam can induce HED states in matter.
id cern-1002176
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-10021762019-09-30T06:29:59Zdoi:10.1088/0305-4470/39/17/S70http://cds.cern.ch/record/1002176engTahir, N ALomonosov, I VShutov, AUdrea, SDeutsch, CFortov, V EGryaznov, VHoffmann, Dieter H HJacobi, JKain, VKuster, MNi, PPiriz, A RSchmidt, RSpiller, PVarentsov, DZioutas, KProposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaborationNuclear Physics - ExperimentDetailed theoretical studies have shown that intense heavy-ion beams that will be generated at the future Facility for Antiprotons and Ion Research (FAIR) (Henning 2004 Nucl. Instrum. Methods B 214 211) at Darmstadt will be a very efficient tool to create high-energy-density (HED) states in matter including strongly coupled plasmas. In this paper we show, with the help of two-dimensional numerical simulations, the interesting physical states that can be achieved considering different beam intensities using zinc as a test material. Another very interesting experiment that can be performed using the intense heavy-ion beam at FAIR will be generation of low-entropy compression of a test material such as hydrogen that is enclosed in a cylindrical shell of a high-Z material such as lead or gold. In such an experiment, one can study the problem of hydrogen metallization and the interiors of giant planets. Moreover, we discuss an interesting method to diagnose the HED matter that is at the centre of the Sun. We have also carried out simulations to study the damage caused by the full impact of the Large Hadron Collider (LHC) beam on a superconducting magnet. An interesting outcome of this study is that the LHC beam can induce HED states in matter.oai:cds.cern.ch:10021762006
spellingShingle Nuclear Physics - Experiment
Tahir, N A
Lomonosov, I V
Shutov, A
Udrea, S
Deutsch, C
Fortov, V E
Gryaznov, V
Hoffmann, Dieter H H
Jacobi, J
Kain, V
Kuster, M
Ni, P
Piriz, A R
Schmidt, R
Spiller, P
Varentsov, D
Zioutas, K
Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration
title Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration
title_full Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration
title_fullStr Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration
title_full_unstemmed Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration
title_short Proposed studies of strongly coupled plasmas at the future FAIR and LHC facilities: the HEDgeHOB collaboration
title_sort proposed studies of strongly coupled plasmas at the future fair and lhc facilities: the hedgehob collaboration
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1088/0305-4470/39/17/S70
http://cds.cern.ch/record/1002176
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