Recent Progress in Fighting Ghosts in Quantum Gravity

We review some of the recent results which can be useful for better understanding of the problem of stability of vacuum and in general classical solutions in higher derivative quantum gravity. The fourth derivative terms in the purely gravitational vacuum sector are requested by renormalizability al...

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Main Authors: Filipe de O. Salles, Ilya L. Shapiro
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:Universe
Subjects:
Online Access:http://www.mdpi.com/2218-1997/4/9/91
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spelling doaj-89d85f6521744083a65ff28344fc1c032020-11-24T21:35:14ZengMDPI AGUniverse2218-19972018-08-01499110.3390/universe4090091universe4090091Recent Progress in Fighting Ghosts in Quantum GravityFilipe de O. Salles0Ilya L. Shapiro1Centro Brasileiro de Pesquisas Físicas, URCA, Rio de Janeiro 22290-180, RJ, BrazilDepartamento de Física, ICE, Universidade Federal de Juiz de Fora, Juiz de Fora 36036-900, MG, BrazilWe review some of the recent results which can be useful for better understanding of the problem of stability of vacuum and in general classical solutions in higher derivative quantum gravity. The fourth derivative terms in the purely gravitational vacuum sector are requested by renormalizability already in both semiclassical and complete quantum gravity theories. However, because of these terms, the spectrum of the theory has unphysical ghost states which jeopardize the stability of classical solutions. At the quantum level, ghosts violate unitarity, and thus ghosts look incompatible with the consistency of the theory. The “dominating” or “standard” approach is to treat higher derivative terms as small perturbations at low energies. Such an effective theory is supposed to glue with an unknown fundamental theory in the high energy limit. We argue that the perspectives for such a scenario are not clear, to say the least. On the other hand, recently, there was certain progress in understanding physical conditions which can make ghosts not offensive. We survey these results and discuss the properties of the unknown fundamental theory which can provide these conditions satisfied.http://www.mdpi.com/2218-1997/4/9/91higher derivativesmassive ghostsstabilitycosmological solutionsgravitational waves
collection DOAJ
language English
format Article
sources DOAJ
author Filipe de O. Salles
Ilya L. Shapiro
spellingShingle Filipe de O. Salles
Ilya L. Shapiro
Recent Progress in Fighting Ghosts in Quantum Gravity
Universe
higher derivatives
massive ghosts
stability
cosmological solutions
gravitational waves
author_facet Filipe de O. Salles
Ilya L. Shapiro
author_sort Filipe de O. Salles
title Recent Progress in Fighting Ghosts in Quantum Gravity
title_short Recent Progress in Fighting Ghosts in Quantum Gravity
title_full Recent Progress in Fighting Ghosts in Quantum Gravity
title_fullStr Recent Progress in Fighting Ghosts in Quantum Gravity
title_full_unstemmed Recent Progress in Fighting Ghosts in Quantum Gravity
title_sort recent progress in fighting ghosts in quantum gravity
publisher MDPI AG
series Universe
issn 2218-1997
publishDate 2018-08-01
description We review some of the recent results which can be useful for better understanding of the problem of stability of vacuum and in general classical solutions in higher derivative quantum gravity. The fourth derivative terms in the purely gravitational vacuum sector are requested by renormalizability already in both semiclassical and complete quantum gravity theories. However, because of these terms, the spectrum of the theory has unphysical ghost states which jeopardize the stability of classical solutions. At the quantum level, ghosts violate unitarity, and thus ghosts look incompatible with the consistency of the theory. The “dominating” or “standard” approach is to treat higher derivative terms as small perturbations at low energies. Such an effective theory is supposed to glue with an unknown fundamental theory in the high energy limit. We argue that the perspectives for such a scenario are not clear, to say the least. On the other hand, recently, there was certain progress in understanding physical conditions which can make ghosts not offensive. We survey these results and discuss the properties of the unknown fundamental theory which can provide these conditions satisfied.
topic higher derivatives
massive ghosts
stability
cosmological solutions
gravitational waves
url http://www.mdpi.com/2218-1997/4/9/91
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