[Mesa-users] New model for galaxy formation, star-formation, the derivation of natural laws, replacement to the Big Bang, etc

Evan Bauer evan.bauer.astro at gmail.com
Fri Nov 15 13:21:45 UTC 2024


Hi Marco,

This mailing list is for questions and discussions related to the MESA stellar evolution code, in order to help users solve problems and get the most out of MESA. Please keep your posts on this forum within that scope.

Cheers,
Evan

> On Nov 15, 2024, at 6:47 AM, Marco Pereira via Mesa-users <mesa-users at lists.mesastar.org> wrote:
> 
> I posted three papers covering everything.  The papers are here:
> Preprints ZENODO
> https://zenodo.org/records/14047261 # HU-The Big Pop Cosmogenesis
> https://zenodo.org/records/14047097 # The Kinetic Energy of Relativistic Particles
> https://zenodo.org/records/14047049 # The Hypergeometrical Universe
> 
> 
> and here are the Python Repositories on GitHub
> https://github.com/ny2292000/CMB_HU
> https://github.com/ny2292000/HU_GalaxyPackage
> https://github.com/ny2292000/HU_Papers
> 
> As far as I know, it explains everything without Dark Matter and Dark Energy, including the Spiral Galaxy Rotation Curve.  The reasoning is simple: Currently one models spiral rotation curves assuming that the luminous mass density (observed from millions of light-years away is reliable. One cannot really detect the gas cloud density from this distance.  Instead, I assumed that the initial state of the gas cloud forming the galaxy could be described by three exponential radial distributions with a common center.  I imposed the conservation of the total mass and if there is a central black hole, that would be the second constraint and fitted the observed rotation curve.
> 
> Here is M33 at z=0
> <RotationCurve_z_0.png>
> and at z=10
> <RotationCurve_z_10.png>
> Notice that the M33 radius decreases with increasing redshift because G is inversely proportional to the 4D radius (G proportional to 1+z)
> Here is the gif showing how it evolved since its creation:
> https://youtu.be/A3buediDHUU
> 
> You might ask if this epoch-dependent G explains the Supernova Data:
> <HU_short_distances_with_16554778896012723_H06969.png>
> <HU_long_distances_with_16554778896012723_H06969.png>
> The distances are normalized to 14.04 billion light-years and corrected for the epoch-dependent G.
> 
> With respect to the effect of epoch-dependent G on our Sun, I explained that the Sun started smaller and has been growing through hydrogen gas accretion since then. That would imply deposition along the path of travel (almost perpendicular to the ecliptic).
> 
> Here, I presented the increasing sun's mass, Earth's temperature, and the radius of the initial cloud.
> I presented a new model for the creation of the Universe and a new model for matter - those go hand-in-hand.  I modeled the CMB as the result of two events:
> a) The Blackholium-Neutronium phase transition (Neutronium Acoustic Oscillations or NAO)
> b) The Neutronium Evaporation (Baryonic Acoustic Oscillations or BAO).
> NAO was modeled using Hyperspherical Harmonics. Since these are not a complete base for describing what happens in the surface of an embedded sphere in a hyperspherical hypersurface, I had to find Earth's location.  Once found, I optimized the hyperspherical harmonic spectral composition:
> Here are the results:
> This is Planck Satellite's Observation:
> <SMICA.png>
> This is the simulation:
> <CMB_Best.png>
> This is the difference to be explained by the BAO:
> 
> <12e93199-cae5-4bab-ac7f-92a0149c774b.png>
> 
> Once I had the Hyperspherical Harmonic Spectral Decomposition, I was able to create the 3D map (prediction) of the observable Universe:
> https://youtu.be/MLqkbCAzcJM
> 
> The model for matter contains all the hyperon taxonomy and maps the Pati-Salam SU(4) GUT.
> 
> Feel free to ask questions.  
> 
> The Hypergeometrical Universe Theory (HU) introduces a novel model of the universe and matter, fundamentally altering our understanding of cosmology, quantum mechanics, and classical forces[Smarandache, F. (2007)][Smarandache, F., & Christianto, V. (2007)][Pereira, M., 2017][Pereira, M., 2018]. Central to HU is the concept of the Fundamental Dilator (FD), a quantum mechanical wave generator responsible for shaping space through metric waves. HU posits that all particles are polymers of FDs, existing as shapeshifting space deformation solitons spinning in 4D and traveling at the speed of light along a hyperspherical locus in a 4D spatial manifold. This model redefines matter and replaces conventional particle-wave dualism with the Quantum Trinity of the FD, the dilaton field, and the Quantum Lagrangian Principle (QLP).
> 
> HU reinterprets spacetime as a mere proxy for events occurring in a 4D spatial manifold, introducing an absolute 4D reference frame and reinterpreting Lorentz transformations in reciprocal space. So, HU replaces all the discussion on metric, spacetime with rotation matrices in a 4D spatial manifold affecting not space but 4D k-vectors. In HU, forces are carried by the dilation field (4D metric waves).  Waves’ 4D k-vectors transform according to Lorentz transformations. So, HU solves the dynamics problem in the inertial frame and then reverts the solution to the Absolute Reference frame.
> 
> By doing so, HU derives the Laws of Nature from first principles and resolves fundamental issues in cosmology, dismissing the need for dark matter, dark energy, and inflation [Guth, A. ,1981]. The theory explains the horizon problem with an initial hyperspherical uniform mass distribution and galaxy dynamics with idiosyncratic mass distributions while showing that time dilation is an artifact of diminishing forces as absolute velocities approach the speed of light.
> 
> One of HU's significant contributions is the derivation of the laws of gravitation and electromagnetism, demonstrating that both follow the same Lorentz force format. The radial dependence of gravitational forces is shown to be a consequence of reference frame selection, such as one centered on the Sun, where radial symmetry dictates the force's behavior. This revolutionary insight has profound implications for electrodynamics, promising to transform the design of magnetic bottles, stellarators, tokamaks, and space propulsion technologies.
> 
> Additionally, HU interprets gravitation as a Van der Waals force, where the carrier dilaton field oscillates at a frequency of 1E24 Hertz. This high-frequency process leads to the dynamic screening of gravitational effects, unifying gravitation and electromagnetism. The theory also facilitates non-perturbative Quantum Chromodynamics (HU-QCD) by mapping its particle model to the Pati-Salam [Pati, J. C., & Salam, A.,1974] SU(4) GUT model and eliminating the need for an integral functional in the Lagrangian Principle through the use of the Quantum Lagrangian Principle (QLP).
> 
> Lastly, HU addresses and resolves the Faint Sun Paradox, the Spiral Galaxy Rotation Curve Conundrum, the Early Galaxy Formation Conundrum, the HyperBright Early Galaxies Conundrum, and the Cylindrical Galaxy Conundrum (JWST observations), which will be presented in forthcoming work.
> 
> 
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