Quantization of Gravitationally Bound Systems

Some of the approaches to quantization in gravity theory concerning gravitationally bound systems are considered. Grades of quantization applicable to these systems have been classified in terms of quantum mechanics, quantum field theory, and quantum geometrodynamics. Energy levels for the graviatom...

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Main Authors: Michael Fil’chenkov, Yuri Laptev
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Universe
Subjects:
Online Access:https://www.mdpi.com/2218-1997/7/2/30
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author Michael Fil’chenkov
Yuri Laptev
author_facet Michael Fil’chenkov
Yuri Laptev
author_sort Michael Fil’chenkov
collection DOAJ
description Some of the approaches to quantization in gravity theory concerning gravitationally bound systems are considered. Grades of quantization applicable to these systems have been classified in terms of quantum mechanics, quantum field theory, and quantum geometrodynamics. Energy levels for the graviatom, Lemaître’s atom, quantum gravitational collapse have been calculated, and relationships for the masses of bound system components, as well as Universe’s birth probabilities, are presented to exemplify the properties of gravitationally bound systems. Objects and processes in them have been analyzed to construct quantum models of compact astrophysical objects and the early Universe.
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spelling doaj.art-98ed6085a08143349751af457b2277d22023-12-03T15:20:41ZengMDPI AGUniverse2218-19972021-01-01723010.3390/universe7020030Quantization of Gravitationally Bound SystemsMichael Fil’chenkov0Yuri Laptev1Institute of Gravitation and Cosmology, RUDN University, 6 Miklukho-Maklay Str., 117198 Moscow, RussiaInstitute of Gravitation and Cosmology, RUDN University, 6 Miklukho-Maklay Str., 117198 Moscow, RussiaSome of the approaches to quantization in gravity theory concerning gravitationally bound systems are considered. Grades of quantization applicable to these systems have been classified in terms of quantum mechanics, quantum field theory, and quantum geometrodynamics. Energy levels for the graviatom, Lemaître’s atom, quantum gravitational collapse have been calculated, and relationships for the masses of bound system components, as well as Universe’s birth probabilities, are presented to exemplify the properties of gravitationally bound systems. Objects and processes in them have been analyzed to construct quantum models of compact astrophysical objects and the early Universe.https://www.mdpi.com/2218-1997/7/2/30quantum gravityquantization in a given space-timespace-time quantizationgraviatomsLemaître atomgravitational collapse
spellingShingle Michael Fil’chenkov
Yuri Laptev
Quantization of Gravitationally Bound Systems
Universe
quantum gravity
quantization in a given space-time
space-time quantization
graviatoms
Lemaître atom
gravitational collapse
title Quantization of Gravitationally Bound Systems
title_full Quantization of Gravitationally Bound Systems
title_fullStr Quantization of Gravitationally Bound Systems
title_full_unstemmed Quantization of Gravitationally Bound Systems
title_short Quantization of Gravitationally Bound Systems
title_sort quantization of gravitationally bound systems
topic quantum gravity
quantization in a given space-time
space-time quantization
graviatoms
Lemaître atom
gravitational collapse
url https://www.mdpi.com/2218-1997/7/2/30
work_keys_str_mv AT michaelfilchenkov quantizationofgravitationallyboundsystems
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