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Ten physical applications of spectral zeta functions

Zeta-function regularization is a powerful method in perturbation theory, and this book is a comprehensive guide for the student of this subject. Everything is explained in detail, in particular the mathematical difficulties and tricky points, and several applications are given to show how the proce...

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Autor principal: Elizalde, Emilio
Lenguaje:eng
Publicado: Springer 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-642-29405-1
http://cds.cern.ch/record/1631389
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author Elizalde, Emilio
author_facet Elizalde, Emilio
author_sort Elizalde, Emilio
collection CERN
description Zeta-function regularization is a powerful method in perturbation theory, and this book is a comprehensive guide for the student of this subject. Everything is explained in detail, in particular the mathematical difficulties and tricky points, and several applications are given to show how the procedure works in practice, for example in the Casimir effect, gravity and string theory, high-temperature phase transition, topological symmetry breaking, and non-commutative spacetime. The formulae, some of which are new, can be directly applied in creating physically meaningful, accurate numerical calculations. The book acts both as a basic introduction and a collection of exercises for those who want to apply this regularization procedure in practice. Thoroughly revised, updated and expanded, this new edition includes novel, explicit formulas on the general quadratic, the Chowla-Selberg series case, an interplay with the Hadamard calculus, and also features a fresh chapter on recent cosmological applications, including the calculation of the vacuum energy fluctuations at large scale in braneworld and other models.
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spelling cern-16313892021-04-21T21:32:29Zdoi:10.1007/978-3-642-29405-1http://cds.cern.ch/record/1631389engElizalde, EmilioTen physical applications of spectral zeta functionsGeneral Theoretical PhysicsZeta-function regularization is a powerful method in perturbation theory, and this book is a comprehensive guide for the student of this subject. Everything is explained in detail, in particular the mathematical difficulties and tricky points, and several applications are given to show how the procedure works in practice, for example in the Casimir effect, gravity and string theory, high-temperature phase transition, topological symmetry breaking, and non-commutative spacetime. The formulae, some of which are new, can be directly applied in creating physically meaningful, accurate numerical calculations. The book acts both as a basic introduction and a collection of exercises for those who want to apply this regularization procedure in practice. Thoroughly revised, updated and expanded, this new edition includes novel, explicit formulas on the general quadratic, the Chowla-Selberg series case, an interplay with the Hadamard calculus, and also features a fresh chapter on recent cosmological applications, including the calculation of the vacuum energy fluctuations at large scale in braneworld and other models.Springeroai:cds.cern.ch:16313892012
spellingShingle General Theoretical Physics
Elizalde, Emilio
Ten physical applications of spectral zeta functions
title Ten physical applications of spectral zeta functions
title_full Ten physical applications of spectral zeta functions
title_fullStr Ten physical applications of spectral zeta functions
title_full_unstemmed Ten physical applications of spectral zeta functions
title_short Ten physical applications of spectral zeta functions
title_sort ten physical applications of spectral zeta functions
topic General Theoretical Physics
url https://dx.doi.org/10.1007/978-3-642-29405-1
http://cds.cern.ch/record/1631389
work_keys_str_mv AT elizaldeemilio tenphysicalapplicationsofspectralzetafunctions