Determination of Dark Energy and Dark Matter from the values of Redshift for the present time, Planck and Trans-Planck epochs of the Big-Bang model
Asger G. Gasanalizade, Ramin A. Hasanalizade

TL;DR
This paper introduces a modified redshift mechanism that provides precise solutions to dark energy and dark matter problems, aligning well with observational data and offering new theoretical insights into cosmological parameters and universe age.
Contribution
It presents a novel quantum relativity redshift model that accurately predicts dark matter and dark energy densities, Hubble constant, and universe age, consistent with recent observations.
Findings
Predicted dark matter density {}_{DM} = 0.25
Predicted dark energy density {}_{DE} = 0.75
Hubble constant H_0 = 65.6 km/s/Mpc
Abstract
As an alternative to the Standard cosmology model we have developed a new modified Freundlich's (quantum relativity) redshift (MFRS) mechanisms, which provide a precise solutions of the Dark Energy and Dark Matter problems. We apply the joint solution of three MFRS equations for concordances quantize bounce Planck hierarchy steps. Simultaneous scaling solutions of MFRS equations in logarithmic scale appropriate to three cosmological epoch's, yields a currently testable predictions regarding the Dark Matter {\Omega}_{DM} = 0.25, and Dark Energy {\Omega}_{DE} = 0.75. These predictions coincides with the recent observational data from WMAP and other a key supernovae SNe Ia findings. Thus, the presence of Dark Matter and Dark Energy had already been not only detected observationally, but also confirmed theoretically with the very compelling accuracy. From the WMAP7 and our predicted ages we…
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Taxonomy
TopicsCosmology and Gravitation Theories · Relativity and Gravitational Theory · Geophysics and Gravity Measurements
