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This work investigates a newly discovered magnetic contribution to the Faraday effect—first reported by Assouline and Capua (2025)—which shows that the oscillating magnetic field of light directly generates a measurable torque on material spins. Their results …
datacite
Masarratbakhsh, Bahman
2025
置信度 0.66
Faraday EffectMagneto-opticsTime Delay Field (TDF)5D PhysicsQuantum Magnetism
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Smoking-Gun Experiments for Conservation-First Gravity:Fold-Induced Signatures in Waves, Vacuum, Cosmology,Quantum Information, and Turbulent SpectraJ. P. Blankert (PhD) Summary This work presents the first systematic catalogue of smoking-gun experimental sign…
datacite
Blankert, Jean Philippe
2025
置信度 0.66
Conservation-first gravityFold geometryConservation Postulategravitational wavesGW dispersion
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Smoking-Gun Experiments for Conservation-First Gravity:Fold-Induced Signatures in Waves, Vacuum, Cosmology,Quantum Information, and Turbulent SpectraJ. P. Blankert (PhD) Summary This work presents the first systematic catalogue of smoking-gun experimental sign…
datacite
Blankert, Jean Philippe
2025
置信度 0.66
Conservation-first gravityFold geometryConservation Postulategravitational wavesGW dispersion
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This study presents a full-lifespan (4.6 billion years) forward-time simulation of a terrestrial-class planet, Lumenis Prime, modeled using a unified relativistic–topological physics framework. The simulation integrates relativistic gravitational fields, magne…
datacite
Slawson, Drew
2025
置信度 0.66
planetary formation terrestrial planet evolution emergent physics relativistic geophysics mantle convection core dynamo modeling atmospheric evolution climate-band stability hydrospheric development exoplanet analogues unified physics simulation geodynamic modeling planetary habitability
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This study presents a full-lifespan (4.6 billion years) forward-time simulation of a terrestrial-class planet, Lumenis Prime, modeled using a unified relativistic–topological physics framework. The simulation integrates relativistic gravitational fields, magne…
datacite
Slawson, Drew
2025
置信度 0.66
planetary formation terrestrial planet evolution emergent physics relativistic geophysics mantle convection core dynamo modeling atmospheric evolution climate-band stability hydrospheric development exoplanet analogues unified physics simulation geodynamic modeling planetary habitability
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This study presents a full-scale global systems simulation of deep mantle plume emergence across a modeled 650-million-year geological timespan. Using a dynamically evolving pregeometry lattice, relativistic-field gravitational formulation, nonlinear viscosity…
datacite
Slawson, Drew
2025
置信度 0.66
deep mantle plume • geodynamics • planetary interiors • global systems simulation • long-timescale modelling • synthetic planetary evolution • mantle flow topology • plume-root formation • thermomechanical coupling • structural blueprint encoding
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This study presents a full-scale global systems simulation of deep mantle plume emergence across a modeled 650-million-year geological timespan. Using a dynamically evolving pregeometry lattice, relativistic-field gravitational formulation, nonlinear viscosity…
datacite
Slawson, Drew
2025
置信度 0.66
deep mantle plume • geodynamics • planetary interiors • global systems simulation • long-timescale modelling • synthetic planetary evolution • mantle flow topology • plume-root formation • thermomechanical coupling • structural blueprint encoding
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2026
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Abstract To understand the properties and interactions of materials, and determining the ground state energies is one of the important challenges in quantum chemistry, materials science, and quantum mechanics, where quantum computing can play an important role…
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Abstract Background: High-performance polyimides serve as critical materials in aerospace and microelectronics, necessitating rigorous modeling of their high-dimensional anisotropic interactions and chemical stability. Current computational strategies struggle…
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