Graviatoms with de Sitter Interior

We present a graviatom with de Sitter interior as a new candidate to atomic dark matter generically related to a vacuum dark energy through its de Sitter vacuum interior. It is a gravitationally bound quantum system consisting of a nucleus represented by a regular primordial black hole (RPBH), its r...

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Main Authors: Irina Dymnikova, Michael Fil’chenkov
Format: Article
Language:English
Published: Wiley 2013-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2013/746894
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author Irina Dymnikova
Michael Fil’chenkov
author_facet Irina Dymnikova
Michael Fil’chenkov
author_sort Irina Dymnikova
collection DOAJ
description We present a graviatom with de Sitter interior as a new candidate to atomic dark matter generically related to a vacuum dark energy through its de Sitter vacuum interior. It is a gravitationally bound quantum system consisting of a nucleus represented by a regular primordial black hole (RPBH), its remnant or gravitational vacuum soliton G-lump, and a charged particle. We estimate probability of formation of RPBHs and G-lumps in the early Universe and evaluate energy spectrum and electromagnetic radiation of graviatom which can in principle bear information about a fundamental symmetry scale responsible for de Sitter interior and serve as its observational signatures.
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spelling doaj-art-08be9bde4aa44ffaad18d4b4cd5196f42025-02-03T01:32:45ZengWileyAdvances in High Energy Physics1687-73571687-73652013-01-01201310.1155/2013/746894746894Graviatoms with de Sitter InteriorIrina Dymnikova0Michael Fil’chenkov1Department of Mathematics and Computer Science, University of Warmia and Mazury, Słoneczna 54, 10-710 Olsztyn, PolandInstitute of Gravitation and Cosmology, Peoples’ Friendship University of Russia, 6 Miklukho-Maklay Street, Moscow 117198, RussiaWe present a graviatom with de Sitter interior as a new candidate to atomic dark matter generically related to a vacuum dark energy through its de Sitter vacuum interior. It is a gravitationally bound quantum system consisting of a nucleus represented by a regular primordial black hole (RPBH), its remnant or gravitational vacuum soliton G-lump, and a charged particle. We estimate probability of formation of RPBHs and G-lumps in the early Universe and evaluate energy spectrum and electromagnetic radiation of graviatom which can in principle bear information about a fundamental symmetry scale responsible for de Sitter interior and serve as its observational signatures.http://dx.doi.org/10.1155/2013/746894
spellingShingle Irina Dymnikova
Michael Fil’chenkov
Graviatoms with de Sitter Interior
Advances in High Energy Physics
title Graviatoms with de Sitter Interior
title_full Graviatoms with de Sitter Interior
title_fullStr Graviatoms with de Sitter Interior
title_full_unstemmed Graviatoms with de Sitter Interior
title_short Graviatoms with de Sitter Interior
title_sort graviatoms with de sitter interior
url http://dx.doi.org/10.1155/2013/746894
work_keys_str_mv AT irinadymnikova graviatomswithdesitterinterior
AT michaelfilchenkov graviatomswithdesitterinterior