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Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes

We evaluate the Casimir energy and force for a massive fermionic field in the geometry of two parallel plates on background of Minkowski spacetime with an arbitrary number of toroidally compactified spatial dimensions. The bag boundary conditions are imposed on the plates and periodicity conditions...

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Autores principales: Bellucci, S, Saharian, A A
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1194234
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author Bellucci, S
Saharian, A A
author_facet Bellucci, S
Saharian, A A
author_sort Bellucci, S
collection CERN
description We evaluate the Casimir energy and force for a massive fermionic field in the geometry of two parallel plates on background of Minkowski spacetime with an arbitrary number of toroidally compactified spatial dimensions. The bag boundary conditions are imposed on the plates and periodicity conditions with arbitrary phases are considered along the compact dimensions. The Casimir energy is decomposed into purely topological, single plate and interaction parts. With independence of the lengths of the compact dimensions and the phases in the periodicity conditions, the interaction part of the Casimir energy is always negative. In order to obtain the resulting force, the contributions from both sides of the plates must be taken into account. Then, the forces coming from the topological parts of the vacuum energy cancel out and only the interaction term contributes to the Casimir force. Applications of the general formulae to Kaluza-Klein type models and carbon nanotubes are given. In particular, we show that for finite length metallic nanotubes the Casimir forces acting on the tube edges are always attractive, whereas for semiconducting-type ones they are attractive for small lengths of the nanotube and repulsive for large lengths.
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spelling cern-11942342019-09-30T06:29:59Z http://cds.cern.ch/record/1194234 eng Bellucci, S Saharian, A A Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes Particle Physics - Theory We evaluate the Casimir energy and force for a massive fermionic field in the geometry of two parallel plates on background of Minkowski spacetime with an arbitrary number of toroidally compactified spatial dimensions. The bag boundary conditions are imposed on the plates and periodicity conditions with arbitrary phases are considered along the compact dimensions. The Casimir energy is decomposed into purely topological, single plate and interaction parts. With independence of the lengths of the compact dimensions and the phases in the periodicity conditions, the interaction part of the Casimir energy is always negative. In order to obtain the resulting force, the contributions from both sides of the plates must be taken into account. Then, the forces coming from the topological parts of the vacuum energy cancel out and only the interaction term contributes to the Casimir force. Applications of the general formulae to Kaluza-Klein type models and carbon nanotubes are given. In particular, we show that for finite length metallic nanotubes the Casimir forces acting on the tube edges are always attractive, whereas for semiconducting-type ones they are attractive for small lengths of the nanotube and repulsive for large lengths. info:eu-repo/grantAgreement/EC/FP7/226455 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1194234 2009-07-29
spellingShingle Particle Physics - Theory
Bellucci, S
Saharian, A A
Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
title Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
title_full Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
title_fullStr Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
title_full_unstemmed Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
title_short Fermionic Casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
title_sort fermionic casimir effect for parallel plates in the presence of compact dimensions with applications to nanotubes
topic Particle Physics - Theory
url http://cds.cern.ch/record/1194234
http://cds.cern.ch/record/1194234
work_keys_str_mv AT belluccis fermioniccasimireffectforparallelplatesinthepresenceofcompactdimensionswithapplicationstonanotubes
AT saharianaa fermioniccasimireffectforparallelplatesinthepresenceofcompactdimensionswithapplicationstonanotubes