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Teoreticheskaya i Matematicheskaya Fizika, 2014, Volume 180, Number 1, Pages 35–50
DOI: https://doi.org/10.4213/tmf8660
(Mi tmf8660)
 

This article is cited in 7 scientific papers (total in 7 papers)

Potentials in modified AdS5 spaces with a moderate increase in entropy

I. Ya. Aref'evaa, E. O. Pozdeevab, T. O. Pozdeevac

a Steklov Mathematical Institute, RAS, Moscow, Russia
b Skobeltsyn Institute of Nuclear Physics, Lomonosov Moscow State University, Moscow, Russia
c Moscow Aviation Institute (National Research University), Moscow, Russia
Full-text PDF (587 kB) Citations (7)
References:
Abstract: We investigate the relation between dilaton potentials and the b-factors of modified anti-de Sitter spaces and obtain the explicit form of dilaton potentials corresponding to b-factors that lead to a satisfactory description of the particle creation multiplicity in the framework of the holographic description.
Keywords: anti-de Sitter space, black hole, heavy-ion collision, particle creation multiplicity, membrane collision, potential for background metric, dilaton, phantom.
Received: 18.02.2014
English version:
Theoretical and Mathematical Physics, 2014, Volume 180, Issue 1, Pages 781–794
DOI: https://doi.org/10.1007/s11232-014-0179-5
Bibliographic databases:
Document Type: Article
Language: Russian
Citation: I. Ya. Aref'eva, E. O. Pozdeeva, T. O. Pozdeeva, “Potentials in modified AdS5 spaces with a moderate increase in entropy”, TMF, 180:1 (2014), 35–50; Theoret. and Math. Phys., 180:1 (2014), 781–794
Citation in format AMSBIB
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\paper Potentials in modified $\text{AdS}_5$ spaces with a~moderate increase in entropy
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Linking options:
  • https://www.mathnet.ru/eng/tmf8660
  • https://doi.org/10.4213/tmf8660
  • https://www.mathnet.ru/eng/tmf/v180/i1/p35
  • This publication is cited in the following 7 articles:
    1. Aref'eva I.Ya., Patrushev A., Slepov P., “Holographic Entanglement Entropy in Anisotropic Background With Confinement-Deconfinement Phase Transition”, J. High Energy Phys., 2020, no. 7, 43  crossref  mathscinet  isi
    2. I. Aref'eva, K. Rannu, “Holographic anisotropic background with confinement-deconfinement phase transition”, J. High Energy Phys., 2018, no. 5, 206  crossref  mathscinet  isi  scopus
    3. Aref'eva I., 5Th International Conference on New Frontiers in Physics, Epj Web of Conferences, 164, eds. Bravina L., Foka Y., Kabana S., E D P Sciences, 2017  crossref  isi  scopus
    4. Aref'eva I., “Holographic description of QGP production in heavy ion collisions”, XIth Conference on Quark Confinement and Hadron Spectrum (Saint Petersburg, Russia, 8–12 September 2014), AIP Conference Proceedings, 1701, eds. Andrianov A., Brambilla N., Kim V., Kolevatov S., Amer Inst Physics, 2016, 090001  crossref  isi  scopus
    5. Aref'eva I., “Multiplicity and Theremalization Time in Heavy-Ions Collisions”, 19Th International Seminar on High Energy Physics (Quarks-2016), Epj Web of Conferences, 125, ed. Andrianov V. Matveev V. Rubakov V. Kim V. Andrianov A. Fitkevich M., E D P Sciences, 2016, UNSP 01007  crossref  isi  scopus
    6. I. Ya. Aref'eva, “Formation time of quark–gluon plasma in heavy-ion collisions in the holographic shock wave model”, Theoret. and Math. Phys., 184:3 (2015), 1239–1255  mathnet  crossref  crossref  mathscinet  adsnasa  isi  elib  elib
    7. D. S. Ageev, I. Ya. Aref'eva, “Holographic thermalization in a quark confining background”, J. Exp. Theor. Phys., 120:3 (2015), 436–443  mathnet  mathnet  crossref  crossref  isi  scopus
    Citing articles in Google Scholar: Russian citations, English citations
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    Теоретическая и математическая физика Theoretical and Mathematical Physics
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    References:85
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