Alexander Yu. Kamenshchik, Ekaterina O. Pozdeeva, Augustin Tribolet, Alessandro Tronconi, Giovanni Venturi, Sergey Yu. Vernov
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For such theories, a model dependent analysis of the features leading to the scalar spectrum enhancement is also presented.","PeriodicalId":20167,"journal":{"name":"Physical Review D","volume":"243 1","pages":""},"PeriodicalIF":5.0000,"publicationDate":"2024-11-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Superpotential method and the amplification of inflationary perturbations\",\"authors\":\"Alexander Yu. Kamenshchik, Ekaterina O. Pozdeeva, Augustin Tribolet, Alessandro Tronconi, Giovanni Venturi, Sergey Yu. Vernov\",\"doi\":\"10.1103/physrevd.110.104011\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"The superpotential method is a reconstruction technique which has proven useful to build exact cosmological solutions. We here employ the superpotential method in order to reconstruct the features necessary for the inflaton potential to drive inflation and lead to the amplification of the curvature perturbations. Such an amplification, at wavelengths shorter than those observed in the cosmic microwave background, is necessary in order to have a significant formation of primordial black holes after inflation ends. 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Superpotential method and the amplification of inflationary perturbations
The superpotential method is a reconstruction technique which has proven useful to build exact cosmological solutions. We here employ the superpotential method in order to reconstruct the features necessary for the inflaton potential to drive inflation and lead to the amplification of the curvature perturbations. Such an amplification, at wavelengths shorter than those observed in the cosmic microwave background, is necessary in order to have a significant formation of primordial black holes after inflation ends. The technique is applied to the cases of a minimally coupled inflaton, to the nonminimal coupling case and to 𝑓(𝑅) theories of gravity. For such theories, a model dependent analysis of the features leading to the scalar spectrum enhancement is also presented.
期刊介绍:
Physical Review D (PRD) is a leading journal in elementary particle physics, field theory, gravitation, and cosmology and is one of the top-cited journals in high-energy physics.
PRD covers experimental and theoretical results in all aspects of particle physics, field theory, gravitation and cosmology, including:
Particle physics experiments,
Electroweak interactions,
Strong interactions,
Lattice field theories, lattice QCD,
Beyond the standard model physics,
Phenomenological aspects of field theory, general methods,
Gravity, cosmology, cosmic rays,
Astrophysics and astroparticle physics,
General relativity,
Formal aspects of field theory, field theory in curved space,
String theory, quantum gravity, gauge/gravity duality.