The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe

Within the framework of cosmological inflationary models, relic gravitational waves arise as a natural consequence of the quantum nature of primordial space-time metric fluctuations and a validity of the general theory of relativity. Therefore, the detection of cosmological gravitational waves would...

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Veröffentlicht in:Кинематика и физика небесных тел
Datum:2005
Hauptverfasser: Novosyadlyj, B., Apunevych, S.
Format: Artikel
Sprache:Englisch
Veröffentlicht: Головна астрономічна обсерваторія НАН України 2005
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Online Zugang:https://nasplib.isofts.kiev.ua/handle/123456789/79643
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Zitieren:The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe / B. Novosyadlyj, S. Apunevych // Кинематика и физика небесных тел. — 2005. — Т. 21, № 5-додаток. — С. 199-204. — Бібліогр.: 11 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Novosyadlyj, B.
Apunevych, S.
author_facet Novosyadlyj, B.
Apunevych, S.
citation_txt The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe / B. Novosyadlyj, S. Apunevych // Кинематика и физика небесных тел. — 2005. — Т. 21, № 5-додаток. — С. 199-204. — Бібліогр.: 11 назв. — англ.
collection DSpace DC
container_title Кинематика и физика небесных тел
description Within the framework of cosmological inflationary models, relic gravitational waves arise as a natural consequence of the quantum nature of primordial space-time metric fluctuations and a validity of the general theory of relativity. Therefore, the detection of cosmological gravitational waves would be the strongest evidence in support of basic assumptions of the inflation theory. Although the tracing gravitational waves by polarization patterns on last scattering surface of the cosmic microwave background is only planned for forthcoming experiments, some general constraints on the tensor mode of metric perturbations (i.e., gravitational waves) can be established right now. We present a determination of the amplitude of the relic gravitational waves power spectrum. An indirect best-fit technique was applied to compare observational data and theoretical predictions. As observations we have used data on the large-scale structure of the Universe and anisotropy of the cosmic microwave background temperature. The conventional inflationary model with 11 parameters has been investigated, all parameters were jointly evaluated. This approach gave us a possibility to find parameters of the power spectrum of gravitational waves along with statistical errors.
first_indexed 2025-11-30T21:43:49Z
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language English
last_indexed 2025-11-30T21:43:49Z
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publisher Головна астрономічна обсерваторія НАН України
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spelling Novosyadlyj, B.
Apunevych, S.
2015-04-03T17:01:51Z
2015-04-03T17:01:51Z
2005
The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe / B. Novosyadlyj, S. Apunevych // Кинематика и физика небесных тел. — 2005. — Т. 21, № 5-додаток. — С. 199-204. — Бібліогр.: 11 назв. — англ.
0233-7665
https://nasplib.isofts.kiev.ua/handle/123456789/79643
Within the framework of cosmological inflationary models, relic gravitational waves arise as a natural consequence of the quantum nature of primordial space-time metric fluctuations and a validity of the general theory of relativity. Therefore, the detection of cosmological gravitational waves would be the strongest evidence in support of basic assumptions of the inflation theory. Although the tracing gravitational waves by polarization patterns on last scattering surface of the cosmic microwave background is only planned for forthcoming experiments, some general constraints on the tensor mode of metric perturbations (i.e., gravitational waves) can be established right now. We present a determination of the amplitude of the relic gravitational waves power spectrum. An indirect best-fit technique was applied to compare observational data and theoretical predictions. As observations we have used data on the large-scale structure of the Universe and anisotropy of the cosmic microwave background temperature. The conventional inflationary model with 11 parameters has been investigated, all parameters were jointly evaluated. This approach gave us a possibility to find parameters of the power spectrum of gravitational waves along with statistical errors.
en
Головна астрономічна обсерваторія НАН України
Кинематика и физика небесных тел
MS3: Physics of Stars and Galaxies
The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
Article
published earlier
spellingShingle The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
Novosyadlyj, B.
Apunevych, S.
MS3: Physics of Stars and Galaxies
title The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
title_full The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
title_fullStr The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
title_full_unstemmed The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
title_short The constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the Universe
title_sort constraints on the power spectrum of relic gravitational waves from current observations of large-scale structure of the universe
topic MS3: Physics of Stars and Galaxies
topic_facet MS3: Physics of Stars and Galaxies
url https://nasplib.isofts.kiev.ua/handle/123456789/79643
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