Rigorously Derive Theoretical Value of EoS Parameter from First Principles

Authors

  • Gang Lee

accelerated expansion, Dark energy, dark energy density., equation of state parameter, Feynman path integral, graviton, Noncommutative quantum gravity, quantum gravity

Abstract

This paper calculates and obtains the theoretical value of EoS parameter as w = − 1 via the Feynman path integral formalism for the evolution of the quantum gravitational field without any a posteriori assumptions, and provides a plausible explanation for the potential deviations of dark energy density and EoS parameter.

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How to Cite

Rigorously Derive Theoretical Value of EoS Parameter from First Principles. (2026). Global Journal of Science Frontier Research, 26(2), 11-14. https://doi.org/10.34257/GJSFRA276526

Author Biography

Gang Lee

Gang Lee is a researcher.

References

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Noncommutative Quantum Gravity and Dark Matter. https://doi.org/10.34257/GJSFRAVOL23IS4PG7

Macroscopic Effect of Quantum Gravity in General Static Isotropic Gravitational Field. https://doi.org/10.34257/GJSFRAVOL24IS2PG49

Calculation of Macroscopic Effect of Quantum Gravity in General Static Isotropic Gravitational Field. https://doi.org/10.34257/GJSFRAVOL24IS4PG75

The Role of Noncommutative Quantum Gravity in Galactic Dynamics and Dark Matter Phenomena. https://doi.org/10.34257/GJSFRAVOL25IS2PG13

Quantum Superposition and the Emergence of Negative Energy in Gravitational Fields. https://doi.org/10.34257/GJSFRAVOL25IS5PG19

Quantum Superposition Effect of Gravitational Field, Negative Pressure and Dark Energy. https://doi.org/10.34257/GJSFRA257434

Rigorously Derive Theoretical Value of EoS Parameter from First Principles

Published

2026-09-23

How to Cite

Rigorously Derive Theoretical Value of EoS Parameter from First Principles. (2026). Global Journal of Science Frontier Research, 26(2), 11-14. https://doi.org/10.34257/GJSFRA276526