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Stringy Membranes in AdS/CFT

We study membrane configurations in AdS_{7/4}xS^{4/7}. The membranes are wrapped around the compact manifold S^{4/7} and are dynamically equivalent to bosonic strings in AdS_5. We thus conveniently identify them as "stringy membranes". For the case of AdS_7xS^4, their construction is carri...

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Detalles Bibliográficos
Autores principales: Axenides, Minos, Floratos, Emmanuel, Linardopoulos, Georgios
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2013)089
http://cds.cern.ch/record/1553085
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author Axenides, Minos
Floratos, Emmanuel
Linardopoulos, Georgios
author_facet Axenides, Minos
Floratos, Emmanuel
Linardopoulos, Georgios
author_sort Axenides, Minos
collection CERN
description We study membrane configurations in AdS_{7/4}xS^{4/7}. The membranes are wrapped around the compact manifold S^{4/7} and are dynamically equivalent to bosonic strings in AdS_5. We thus conveniently identify them as "stringy membranes". For the case of AdS_7xS^4, their construction is carried out by embedding the Polyakov action for classical bosonic strings in AdS_5, into the corresponding membrane action. Therefore, every string configuration in AdS_5 can be realized by an appropriately chosen stringy membrane in AdS_7xS^4. We discuss the possibility of this being also the case for stringy membranes in AdS_4xS^7/Z^k (k > 1 or k = 1). By performing a stability analysis to the constructed solutions, we find that the (membrane) fluctuations along their transverse directions are organized in multiple Lam\'{e} stability bands and gaps in the space of parameters of the configurations. In this membrane picture, strings exhibit a single band/gap structure. Since the spectrum of quadratic fluctuations is important for the quantization of membranes, our analysis suggests the idea that quantum membranes behave as collective excitations of a multitude of interacting quantum strings.
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spelling cern-15530852023-10-04T08:17:18Zdoi:10.1007/JHEP08(2013)089http://cds.cern.ch/record/1553085engAxenides, MinosFloratos, EmmanuelLinardopoulos, GeorgiosStringy Membranes in AdS/CFTParticle Physics - TheoryWe study membrane configurations in AdS_{7/4}xS^{4/7}. The membranes are wrapped around the compact manifold S^{4/7} and are dynamically equivalent to bosonic strings in AdS_5. We thus conveniently identify them as "stringy membranes". For the case of AdS_7xS^4, their construction is carried out by embedding the Polyakov action for classical bosonic strings in AdS_5, into the corresponding membrane action. Therefore, every string configuration in AdS_5 can be realized by an appropriately chosen stringy membrane in AdS_7xS^4. We discuss the possibility of this being also the case for stringy membranes in AdS_4xS^7/Z^k (k > 1 or k = 1). By performing a stability analysis to the constructed solutions, we find that the (membrane) fluctuations along their transverse directions are organized in multiple Lam\'{e} stability bands and gaps in the space of parameters of the configurations. In this membrane picture, strings exhibit a single band/gap structure. Since the spectrum of quadratic fluctuations is important for the quantization of membranes, our analysis suggests the idea that quantum membranes behave as collective excitations of a multitude of interacting quantum strings.We study membrane configurations in AdS(7/4) × S (4/7). The membranes are wrapped around the compact manifold S (4/7) and are dynamically equivalent to bosonic strings in AdS(5). We thus conveniently identify them as “stringy membranes”. For the case of AdS(7) × S (4), their construction is carried out by embedding the Polyakov action for classical bosonic strings in AdS(5), into the corresponding membrane action. Therefore, every string configuration in AdS(5) can be realized by an appropriately chosen stringy membrane in AdS(7) × S (4). We discuss the possibility of this being also the case for stringy membranes in AdS(4) × S (7)/ (k ≥ 1). By performing a stability analysis to the constructed solutions, we find that the (membrane) fluctuations along their transverse directions are organized in multiple Lamé stability bands and gaps in the space of parameters of the configurations. In this membrane picture, strings exhibit a single band/gap structure.We study membrane configurations in AdS_{7/4}xS^{4/7}. The membranes are wrapped around the compact manifold S^{4/7} and are dynamically equivalent to bosonic strings in AdS_5. We thus conveniently identify them as "Stringy Membranes". For the case of AdS_7xS^4, their construction is carried out by embedding the Polyakov action for classical bosonic strings in AdS_5, into the corresponding membrane action. Therefore, every string configuration in AdS_5 can be realized by an appropriately chosen stringy membrane in AdS_7xS^4. We discuss the possibility of this being also the case for stringy membranes in AdS_4xS^7/Z^k (k > 1 or k = 1). By performing a stability analysis to the constructed solutions, we find that the (membrane) fluctuations along their transverse directions are organized in multiple Lamé stability bands and gaps in the space of parameters of the configurations. In this membrane picture, strings exhibit a single band/gap structure.arXiv:1306.0220oai:cds.cern.ch:15530852013-06-02
spellingShingle Particle Physics - Theory
Axenides, Minos
Floratos, Emmanuel
Linardopoulos, Georgios
Stringy Membranes in AdS/CFT
title Stringy Membranes in AdS/CFT
title_full Stringy Membranes in AdS/CFT
title_fullStr Stringy Membranes in AdS/CFT
title_full_unstemmed Stringy Membranes in AdS/CFT
title_short Stringy Membranes in AdS/CFT
title_sort stringy membranes in ads/cft
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP08(2013)089
http://cds.cern.ch/record/1553085
work_keys_str_mv AT axenidesminos stringymembranesinadscft
AT floratosemmanuel stringymembranesinadscft
AT linardopoulosgeorgios stringymembranesinadscft