Connecting Gravity and Quantum Physics: Primordial Black Holes and Accelerated Evolution of the Universe
Victor Borsevici, Samit Ganguly, Goutam Manna

TL;DR
This paper proposes a new framework linking gravity and quantum mechanics through primordial black holes, explaining early universe phenomena and addressing major cosmological puzzles like dark matter, dark energy, and accelerated cosmic evolution.
Contribution
It introduces a novel quantum gravitational model involving primordial black holes that explains early universe formation, resolves key paradoxes, and connects quantum theory with general relativity.
Findings
Primordial black holes formed before recombination epoch.
PBHs provide insights into dark matter and dark energy.
The model explains accelerated universe evolution observed by JWST.
Abstract
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…
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Taxonomy
TopicsRelativity and Gravitational Theory · Cosmology and Gravitation Theories · Algebraic and Geometric Analysis
