The Truth of Dark Energy in the Dahli Model

This paper presents dark energy in the Dahli Model. The model defines dark energy as pure cosmic energy, which in the current cosmic phase is one superposed, non-quantized cosmic entity in which all closed strings are structurally merged, and not a collection of gravitons. Its mass counterpart, pure cosmic mass, is currently quantized in the form of a cosmic void composed of closed mass membranes. Cosmic expansion results from the expansion of these membranes through their interaction with dark energy, and has no relation to the space inside galaxies. By an existential condition, two pure counterparts cannot both remain superposed; therefore, when the membranes reach their maximum spatial extent and merge into one cosmic spatial dimension, forming the final cosmic bubble, pure cosmic energy becomes quantized, its closed strings become separate and vibrate, and gravitons emerge, only at the end of the universe. The end of the universe is accordingly the end of cosmic expansion. The paper also distinguishes relativistic gravity, which is the curvature of spacetime and is not quantized, from pure gravity, and states that the graviton is not a fourth force. The mathematical foundations of the model will be presented in forthcoming papers. Keywords: Dahli Model; dark energy; pure cosmic energy; quantized cosmic void; closed mass membranes; final cosmic bubble; cosmic expansion; quantization; closed strings; cosmic gravity; graviton.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-08
DOI
https://doi.org/10.5281/zenodo.23227504
Primary Topic
Cosmology and Gravitation Theories
Type
preprint
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preprint

The Truth of Dark Energy in the Dahli Model

Dahli Chabane
Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
preprint

The Truth of Dark Energy in the Dahli Model

Dahli Chabane
preprint en

Abstract

This paper presents dark energy in the Dahli Model. The model defines dark energy as pure cosmic energy, which in the current cosmic phase is one superposed, non-quantized cosmic entity in which all closed strings are structurally merged, and not a collection of gravitons. Its mass counterpart, pure cosmic mass, is currently quantized in the form of a cosmic void composed of closed mass membranes. Cosmic expansion results from the expansion of these membranes through their interaction with dark energy, and has no relation to the space inside galaxies. By an existential condition, two pure counterparts cannot both remain superposed; therefore, when the membranes reach their maximum spatial extent and merge into one cosmic spatial dimension, forming the final cosmic bubble, pure cosmic energy becomes quantized, its closed strings become separate and vibrate, and gravitons emerge, only at the end of the universe. The end of the universe is accordingly the end of cosmic expansion. The paper also distinguishes relativistic gravity, which is the curvature of spacetime and is not quantized, from pure gravity, and states that the graviton is not a fourth force. The mathematical foundations of the model will be presented in forthcoming papers. Keywords: Dahli Model; dark energy; pure cosmic energy; quantized cosmic void; closed mass membranes; final cosmic bubble; cosmic expansion; quantization; closed strings; cosmic gravity; graviton.

Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
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