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Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models

We study d-dimensional black holes surrounded by dark energy (DE), embedded in D-dimensional M-theory/superstring inspired models having AdS$_d × 𝕊^{d+k}$ space–time where $D = 2d + k$. We focus first on the thermodynamical Hawking–Page phase transitions, whose microscopical origin is linked to $N$...

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Autores principales: Belhaj, A., El Balali, A., El Hadri, W., Hassouni, Y., Torrente-Lujan, E.
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S0217751X21500573
http://cds.cern.ch/record/2718664
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author Belhaj, A.
El Balali, A.
El Hadri, W.
Hassouni, Y.
Torrente-Lujan, E.
author_facet Belhaj, A.
El Balali, A.
El Hadri, W.
Hassouni, Y.
Torrente-Lujan, E.
author_sort Belhaj, A.
collection CERN
description We study d-dimensional black holes surrounded by dark energy (DE), embedded in D-dimensional M-theory/superstring inspired models having AdS$_d × 𝕊^{d+k}$ space–time where $D = 2d + k$. We focus first on the thermodynamical Hawking–Page phase transitions, whose microscopical origin is linked to $N$ coincident ($d − 2$)-branes supposed to live in such inspired models. Interpreting the cosmological constant as the number of colors, we compute various thermodynamical quantities in terms of the brane number, the entropy and the DE contribution. Calculating the ordinary chemical potential conjugated to the number of colors, we show that a generic black hole is more stable for a larger number of branes in lower dimensions. In the presence of DE, however, we find that the DE state parameter $ω_q$ takes particular values, for ($D,d,k$) models, providing nontrivial phase transitions. Then, we examine some optical properties. Concretely, we investigate shadow behaviors of quintessential black holes in terms of ($d − 2$)-brane physics. In terms of certain ratios, we find similar behaviors for critical quantities and shadow radius.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27186642023-10-04T08:14:57Zdoi:10.1142/S0217751X21500573http://cds.cern.ch/record/2718664engBelhaj, A.El Balali, A.El Hadri, W.Hassouni, Y.Torrente-Lujan, E.Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired modelshep-phParticle Physics - Phenomenologygr-qcGeneral Relativity and Cosmologyhep-thParticle Physics - TheoryWe study d-dimensional black holes surrounded by dark energy (DE), embedded in D-dimensional M-theory/superstring inspired models having AdS$_d × 𝕊^{d+k}$ space–time where $D = 2d + k$. We focus first on the thermodynamical Hawking–Page phase transitions, whose microscopical origin is linked to $N$ coincident ($d − 2$)-branes supposed to live in such inspired models. Interpreting the cosmological constant as the number of colors, we compute various thermodynamical quantities in terms of the brane number, the entropy and the DE contribution. Calculating the ordinary chemical potential conjugated to the number of colors, we show that a generic black hole is more stable for a larger number of branes in lower dimensions. In the presence of DE, however, we find that the DE state parameter $ω_q$ takes particular values, for ($D,d,k$) models, providing nontrivial phase transitions. Then, we examine some optical properties. Concretely, we investigate shadow behaviors of quintessential black holes in terms of ($d − 2$)-brane physics. In terms of certain ratios, we find similar behaviors for critical quantities and shadow radius.We study $d$-dimensional $AdS$ black holes surrounded by Dark Energy (DE), embedded in $D$-dimensional M-theory/superstring inspired models having $AdS_d \times \mathbb{S}^{d+k}$ space-time with $D=2d+k$. We focus on the thermodynamic Hawking-Page phase transitions of quintessential DE black hole solutions, whose microscopical origin is linked to $N$ coincident $(d-2)$-branes supposed to live in such $(2d+k)$-dimensional models. Interpreting the cosmological constant as the number of colors $\propto N^{\frac{d-1}{2}}$, we calculate various thermodynamical quantities in terms of brane number, entropy and DE contributions. Computing the chemical potential conjugated to the number of colors in the absence of DE, we show that a generic black hole is more stable for a larger number of branes for lower dimensions $d$.In the presence of DE, we find that the DE state parameter $\omega_q$ should take particular values, for $(D,d,k)$ models, providing a non trivial phase transition structure.arXiv:2004.10647FISPAC-TH/20-31415UQBAR-TH/20-27182oai:cds.cern.ch:27186642020-04-22
spellingShingle hep-ph
Particle Physics - Phenomenology
gr-qc
General Relativity and Cosmology
hep-th
Particle Physics - Theory
Belhaj, A.
El Balali, A.
El Hadri, W.
Hassouni, Y.
Torrente-Lujan, E.
Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models
title Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models
title_full Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models
title_fullStr Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models
title_full_unstemmed Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models
title_short Phase transition and shadow behaviors of quintessential black holes in M-theory/superstring inspired models
title_sort phase transition and shadow behaviors of quintessential black holes in m-theory/superstring inspired models
topic hep-ph
Particle Physics - Phenomenology
gr-qc
General Relativity and Cosmology
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1142/S0217751X21500573
http://cds.cern.ch/record/2718664
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AT hassouniy phasetransitionandshadowbehaviorsofquintessentialblackholesinmtheorysuperstringinspiredmodels
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