Connecting Gravity and Quantum Physics: Primordial Black Holes and Accelerated Evolution of the Universe

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Hauptverfasser: Borsevici, Victor, Ganguly, Samit, Manna, Goutam
Format: Preprint
Veröffentlicht: 2024
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author Borsevici, Victor
Ganguly, Samit
Manna, Goutam
author_facet Borsevici, Victor
Ganguly, Samit
Manna, Goutam
contents This study presents a new framework to explore the fundamental relationship between gravity and quantum mechanics, with particular emphasis on the fundamental role of primordial black holes (PBHs) in cosmology. Through the concept of self-gravitating condensed light in the form of the experimentally discovered quantum photon Bose-Einstein condensate, this work examines the quantized gravitational, informational, thermodynamical, traditional, and other attributes of PBHs and their implications for early universe dynamics, baryogenesis, the very early formation of galaxies, supermassive black holes (SMBHs) and large-scale structures. Precise calculations have shown that primordial protogalaxies with supermassive black holes at their centers of gravity were formed before the recombination epoch. By solving issues like the cosmological constant problem and the information loss paradox, dark matter and dark energy, this work provides insights into Planck-scale physics and it's impact to cosmology. In such a way PBHs serve as a bridge between quantum theory and general relativity. This study ultimately posits that presented PBH physics is essential to resolving major cosmological and astrophysical issues, paradoxes and "mysteries", such as the accelerated evolution of the Universe established by JWST and other observations.
format Preprint
id arxiv_https___arxiv_org_abs_2411_11047
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Connecting Gravity and Quantum Physics: Primordial Black Holes and Accelerated Evolution of the Universe
Borsevici, Victor
Ganguly, Samit
Manna, Goutam
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Quantum Physics
This study presents a new framework to explore the fundamental relationship between gravity and quantum mechanics, with particular emphasis on the fundamental role of primordial black holes (PBHs) in cosmology. Through the concept of self-gravitating condensed light in the form of the experimentally discovered quantum photon Bose-Einstein condensate, this work examines the quantized gravitational, informational, thermodynamical, traditional, and other attributes of PBHs and their implications for early universe dynamics, baryogenesis, the very early formation of galaxies, supermassive black holes (SMBHs) and large-scale structures. Precise calculations have shown that primordial protogalaxies with supermassive black holes at their centers of gravity were formed before the recombination epoch. By solving issues like the cosmological constant problem and the information loss paradox, dark matter and dark energy, this work provides insights into Planck-scale physics and it's impact to cosmology. In such a way PBHs serve as a bridge between quantum theory and general relativity. This study ultimately posits that presented PBH physics is essential to resolving major cosmological and astrophysical issues, paradoxes and "mysteries", such as the accelerated evolution of the Universe established by JWST and other observations.
title Connecting Gravity and Quantum Physics: Primordial Black Holes and Accelerated Evolution of the Universe
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
Quantum Physics
url https://arxiv.org/abs/2411.11047