Array

Secrets of the Aether  Aetherwizard by Quantum AetherDynamics Institute   501(c)3  Donations Accepted

P01Aether Lagrangian for Black Hole Parameters (Physics Essays Vol. 38, No. 4)

D.W. Thomson III • DOI: 10.4006/0836-1398-38.4.341

Applies an Aether-Lagrangian framework to black-hole-scale parameters, emphasizing ledger-style relationships and testable scaling laws.

P02The Aether Physics Model: A Novel Framework for Unifying Quantum Mechanics and General Relativity

D.W. Thomson III; J.D. Bourassa • DOI: 10.20944/preprints202407.1139.v1

High-level synthesis of APM as a unification framework, outlining core assumptions, ledgers, and falsifiable experimental pathways.

P03Secrets of the Aether (3rd Edition)

D.W. Thomson III; J.D. Bourassa • DOI: 10.13140/2.1.1633.7926

Book-length reference consolidating APM/QMU concepts, definitions, and a broad set of derivations and applications.

P04From Atomic to Galactic: Eight Parameter-Free Retrodictions of the Aether Physics Model

D.W. Thomson III • DOI: 10.13140/RG.2.2.10363.63527

Presents a cross-scale “stress test” of APM via multiple retrodictions intended to require minimal tuning and share common ledger inputs.

P05The Muon Anomalous Magnetic Moment in the Aether Physics Model: A Geometric Derivation

D.W. Thomson III; J.D. Bourassa • DOI: 10.13140/RG.2.2.13735.46241

Geometric/ledger-based derivation targeting the muon’s anomalous magnetic moment, connecting magnetic moment structure to Aether geometry.

P06Chronovibration in Five Dimensions: A Classical Aether Origin of Superposition, Entanglement, and Tunnelling

D.W. Thomson III; J.D. Bourassa • DOI: 10.13140/RG.2.2.14806.97605

Develops a 5D chronovibrational picture intended to reproduce quantum phenomena as emergent behaviors of a structured substrate.

P07BioAetherDynamics: A QMU-Based Model of Electromechanical Life Processes

D.W. Thomson III • DOI: 10.13140/RG.2.2.34747.12323

Introduces a QMU-ledger approach to biological electromechanics, focusing on measurable conductance and field-coupled processes.

P08The Aether Lagrangian: Deriving Altitude-Dependent Magnetic Moment Variations in the Aether Physics Model

D.W. Thomson III • DOI: 10.13140/RG.2.2.11801.33126

Uses an Aether-Lagrangian treatment to predict altitude-linked magnetic-moment variations and outlines the measurement logic.

P09BioAetherDynamics: A Visionary Biomechanics for Future Generations

D.W. Thomson III • DOI: 10.13140/RG.2.2.26291.75040

Conceptual overview of BioAetherDynamics, emphasizing a future-facing research direction linking mechanics, fields, and diagnostics.

P10BioAetherDynamics Conductance Meter: A QMU-Based Approach for Biological Diagnostics

D.W. Thomson III • DOI: 10.13140/RG.2.2.23670.31040

Proposes a conductance-meter concept framed in QMU terms for repeatable biological diagnostic measurements.

P11Beta Plus Decay and Matter Creation in the Aether Physics Model: A Geometric Framework for Nuclear and Cosmic Phenomena

D.W. Thomson III • DOI: 10.13140/RG.2.2.19685.72161

Explores beta-plus decay and related creation processes using geometric ledger constraints spanning nuclear to cosmic contexts.

P12The Enigma of Mass: Insights from the Aether Physics Model

D.W. Thomson III • DOI: 10.13140/RG.2.2.12974.83525

Discusses mass as an emergent/ledger quantity in APM, tying mass behavior to distributed charge and substrate geometry.

P13Natural Geometric Foundations of QMU and CGS Unit Systems: How Their Shared Recognition of Distributed Charge Reveals Fundamental Physical Reality

D.W. Thomson III • DOI: 10.13140/RG.2.2.34837.95205

Motivates QMU by aligning it with distributed-charge reasoning implicit in Gaussian cgs, emphasizing dimensional closure and interpretability.

P14Bridging Mathematical Tools and Physical Reality: A Case for Dimensional Analysis in Modern Physics

D.W. Thomson III • DOI: 10.13140/RG.2.2.25222.18248

Advocates rigorous dimensional/ledger analysis as a primary tool for model building, consistency checks, and hypothesis triage.

P15A Geometric Theory of Neutrinos: A Novel Interpretation Based on the Aether Physics Model

D.W. Thomson III • DOI: 10.13140/RG.2.2.36582.84802

Introduces neutrinos as geometric/holonomic features in APM, focusing on how mixing and effective properties arise from substrate structure.

P16Time Dilation Demystified: Understanding Clock Rates in Space and Motion

D.W. Thomson III • DOI: 10.13140/RG.2.2.31835.58409

Explains time dilation with an emphasis on physical clock mechanisms and rate changes, framed for accessible interpretation.

P17A Novel Interpretation of the Photoelectric Effect Using the Aether Physics Model

D.W. Thomson III • DOI: 10.13140/RG.2.2.11217.95848

Reinterprets the photoelectric effect through an Aether-based lens, focusing on mechanism-level explanations and measurable predictions.

P18Reexamining Wave-Particle Duality: A Critical Analysis of the Particle Nature of Light

D.W. Thomson III • DOI: 10.13140/RG.2.2.25478.59204

Analyzes interpretations of light’s particle behavior, emphasizing constraints, measurement signatures, and alternative mechanistic models.

P19A Unified Force Theory Based on Quantum Aether Dynamics: Predictions and Experimental Support

D.W. Thomson III; J.D. Bourassa • DOI: 10.13140/RG.2.2.16072.53769

Presents a unified-force program within quantum Aether dynamics, emphasizing prediction structure and experimental touchpoints.

P20A Novel Interpretation of the Ideal Gas Law and Its Relation to Black Body Radiation Using the Aether Physics Model

D.W. Thomson III • DOI: 10.13140/RG.2.2.30228.31368

Connects gas-law behavior and black-body considerations under APM assumptions, highlighting thermodynamic and radiative ledger links.

P21A Novel Approach to Electron Binding Energy: Insights from the Aether Physics Model

D.W. Thomson III; J.D. Bourassa • DOI: 10.13140/RG.2.2.24151.89763

Proposes an APM-ledger interpretation of electron binding energies, with emphasis on scaling, structure, and testable comparisons.

P22Altitude-Dependent Magnetic Moment Variations: A Novel Approach Using the Aether Physics Model and Quantum Measurement Units

D.W. Thomson III • DOI: 10.13140/RG.2.2.23716.90242

Expands the altitude-dependent magnetic-moment program with explicit QMU framing and practical observational/experimental implications.

P23Consistency of the APM with Relativity Theories

D.W. Thomson III; J.D. Bourassa • DOI: 10.13140/RG.2.2.19452.76165/1

Examines how APM aligns with (or reproduces limits of) relativity via dimensional closure, clock-rate logic, and ledger correspondences.

P24An Introduction to Aether Engineering and Its Applications

D.W. Thomson III • DOI: 10.13140/RG.2.2.24695.64163

Introduces engineering-oriented concepts under APM/QMU, focusing on practical device ideas and experimentally testable mechanisms.

P25From 5D Chronovibration to 4D Holonomy: A Rigorous Derivation in QMU

D.W. Thomson III • DOI: 10.5281/zenodo.17345984

Derives a 4D holonomy description from 5D chronovibration using QMU-native ledger closure and explicit geometric mapping.

P26Tri-Modal Oscillation (trmo) as a QMU Blueprint for Physics: Geometry, Dynamics, and Thermoradiance in a Single Measurement Language

D.W. Thomson III • DOI: 10.5281/zenodo.17138174

Defines trmo as a unifying QMU scalar intended to couple geometry, drive, and thermoradiance for experiment-ready resonance modeling.

P27Magnetic-Charge Domain Energy Storage: A Dual-Space Approach in QMU

D.W. Thomson III • DOI: 10.5281/zenodo.17137706

Explores energy storage framed in a magnetic-charge domain, using QMU ledgers to define capacities, limits, and potential test devices.

P28Light as Aether Throughput in Quantum Measurement Units: A Minimal Lagrangian and Four Derivable Experiments

D.W. Thomson III • DOI: 10.5281/zenodo.17136088

Presents a minimal light-throughput model in QMU and lays out a compact set of experiments derived directly from the ledger.

P29Chronovibrational Power Conversion: Harnessing Resonance in the Aether Physics Model

D.W. Thomson III • DOI: 10.5281/zenodo.17135801

Outlines how chronovibrational resonance could be leveraged for power conversion, emphasizing measurable invariants and device protocols.

P30Ball Lightning in Quantum Measurement Units (QMU): A Lagrangian Derivation, Universal Invariant, and Laboratory Protocols

D.W. Thomson III • DOI: 10.5281/zenodo.17127310

Develops a QMU Lagrangian treatment of ball lightning, highlighting a proposed invariant and practical laboratory test procedures.

P31Aether Propulsion via Rotating Magnetic Flux Tubes: A Testable Prediction from the Aether Physics Model

D.W. Thomson III • DOI: 10.5281/zenodo.17123452

Proposes a rotating-flux-tube mechanism for propulsion and specifies measurable signatures intended to make the idea falsifiable.

P32A Topological Origin for Cosmic Birefringence: A Prediction of beta 0 = 1 / ( 16 pi 2 )

D.W. Thomson III • DOI: 10.5281/zenodo.17069938

Connects cosmic birefringence to a topological/ledger factor, presenting a compact parameter-free prediction for the rotation scale.

P33Casimir-Driven Aether Nucleation and Matter Creation in QMU

D.W. Thomson III • DOI: 10.5281/zenodo.17194030

Frames Casimir-scale interactions as a nucleation mechanism in QMU, with emphasis on ledger-consistent matter-creation pathways.

P34Nucleon Surface–Area Invariant in QMU: A Toroidal Ledger, Experiments, and Predictions for Particle Laboratories

D.W. Thomson III • DOI: 10.5281/zenodo.17230277

Develops a nucleon surface-area invariant using toroidal ledger structure, and outlines particle-lab experiments designed to test it.

P35Foundations of QMU in Gaussian cgs: Aether Geometry, Ledger Identities, and a Minimal Replacement for Maxwell

D.W. Thomson III • DOI: 10.5281/zenodo.17229634

Establishes QMU foundations and key ledger identities aligned to Gaussian cgs, introducing a streamlined electromagnetic formulation.

P36A QMU Lagrangian for the Photoelectric Effect: Banded Photons, Dynamic Photon Number, and rmfd Tests

D.W. Thomson III • DOI: 10.5281/zenodo.17229530

Recasts the photoelectric effect in a QMU Lagrangian with banded-photon concepts and proposes rmfd-linked experimental checks.

P37Maxwell (1864) in Quantum Measurement Units: A Literal Twenty-Equation Ledger with Aether Geometry

D.W. Thomson III • DOI: 10.5281/zenodo.17261821

Presents a literal Maxwell-equation ledger expressed in QMU, emphasizing Aether geometry and explicit operational quantities.

P38Localized Gravity Control via Curl Thresholds: Experimental Tests of the Aether Lagrangian

D.W. Thomson III • DOI: 10.5281/zenodo.17267029

Proposes curl-threshold conditions for localized gravity-control signatures and outlines experiment designs intended to falsify the claim.

P39Aether as Physical Structure: QMU Invariants, Source Equations, GR Limit, and Falsifiable Predictions

D.W. Thomson III • DOI: 10.5281/zenodo.17273435

Positions the Aether as a concrete structure, derives core invariants and limits, and catalogs predictions designed for experimental audit.

P40Solar-System Kinematics in QMU: A Curl–Au Ledger for Light, Time, and Orbits

D.W. Thomson III • DOI: 10.5281/zenodo.17274107

Applies curl–Au ledger structure to solar-system kinematics, focusing on orbital relations, time, and light propagation in QMU terms.

P41Gforce in Mainstream Data: Mapping Gforce = c^4/G to Λ, Ledger Closures, and Observables

D.W. Thomson III • DOI: 10.5281/zenodo.17329900

Maps a Gforce-style closure to observables and related quantities, emphasizing ledger consistency and measurable correspondences.

P42Impedance in Quantum Measurement Units (QMU): Purely Real Methods for Engineers — Article and Engineer's Reference Card

D.W. Thomson III • DOI: 10.5281/zenodo.17316339

Engineer-focused treatment of impedance in QMU with “purely real” workflows and a compact reference card for practical use.

P43Mechanics of Stellar Composition in Quantum Measurement Units (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17296168

Uses QMU ledger mechanics to discuss stellar composition and related constraints, emphasizing measurable scaling relations.

P44A Trumpet-Geometry Tesla Resonator to Test the QMU Carrier Mapping

D.W. Thomson III • DOI: 10.5281/zenodo.17408713

Proposes a trumpet-geometry Tesla resonator as a test instrument for QMU carrier mapping, emphasizing calibration and measurable output.

P45Aether Displacement ('Gravitational') Waves in APM: Dispersion, Polarizations, and QMU Benchmarks

D.W. Thomson III • DOI: 10.5281/zenodo.17391605

Develops an APM wave sector for displacement (“gravitational”) waves and provides QMU benchmarks for dispersion and polarization tests.

P46QMU Rotating Magnetic Field Detector (rmfd): Design, Calibration, and 5D Aether Chronovibration Readout

D.W. Thomson III • DOI: 10.5281/zenodo.17393844

Device design paper for rmfd, covering calibration logic and proposed readout channels for 5D chronovibration signatures.

P47Axioms of QMU and Dimensional Algebra: Ledgers, Morphisms, and Uniqueness

D.W. Thomson III • DOI: 10.5281/zenodo.17399285

Formalizes QMU dimensional algebra with axioms, ledger morphisms, and uniqueness arguments to support consistent derivations.

P48Lundquist Filaments in Quantum Measurement Units (QMU): Coaxial Shells, Polarization Cancellation, and a QMU Data Pipeline for Orion A

D.W. Thomson III • DOI: 10.5281/zenodo.17402811

Applies QMU-ledger tools to filamentary structures, with emphasis on coaxial-shell modeling, polarization cancellation, and data workflow.

P49The Josephson Effect in the Aether Physics Model Using Quantum Measurement Units

D.W. Thomson III • DOI: 10.5281/zenodo.17451847

Interprets the Josephson effect through APM/QMU ledgers, emphasizing slope tests and bridge relations to electromagnetic constants.

P50The Charge Conversion Factor in the Aether Physics Model: From Singular to Distributed Charge, with Rules, Exceptions, and Benchmarks

D.W. Thomson III • DOI: 10.5281/zenodo.17451188

Defines and systematizes the charge conversion factor bridging singular and distributed charge representations, including benchmark cases.

P51Helicity, Eddy, and Temperature in the Aether Physics Model

D.W. Thomson III • DOI: 10.5281/zenodo.17416732

Connects helicity and eddy-style dynamics to thermal behavior within APM, emphasizing ledger-based measurement definitions.

P52Eddy Currents in the Aether Physics Model: A QMU Ledger for Relaxation, Induction, and Testable Protocols (with the Charge Conversion Factor Bridge and Experimental Validation)

D.W. Thomson III • DOI: 10.5281/zenodo.17456939

Presents a QMU-native eddy-current ledger with relaxation/induction protocols and explicit linkage to the charge conversion factor.

P53Metrology of the Aether Unit and Curl in QMU: Operational Extraction of Au and Non-Circular Ledger Tests with Defined Curl and Cavity-Perturbation Derivation

D.W. Thomson III • DOI: 10.5281/zenodo.17459718

Operational metrology guide for extracting $A_u$ and curl using non-circular tests, including a cavity-perturbation derivation path.

P54Neutrinos and the Weak Sector in the Aether Physics Model (QMU): Chronovibrational Mixing, Mass Ratios, and Oscillations

D.W. Thomson III • DOI: 10.5281/zenodo.17495149

Treats weak-sector phenomena via chronovibrational mixing and ledger mass ratios, emphasizing oscillation structure and measurable constraints.

P55Casimir--Nuclear Chronovibration as the Cosmological Driver: A Full QMU Derivation

D.W. Thomson III • DOI: 10.5281/zenodo.17498321

Develops a cosmological driver hypothesis based on Casimir–nuclear chronovibration, derived explicitly in QMU ledger form.

P56Spherical Cardioid Geometry of Aether Units: Dual-U(1) Holonomy, Torsion Quantization, and the QMU LedgerCreators

D.W. Thomson III • DOI: 10.5281/zenodo.17504301

Introduces spherical-cardioid Aether-unit geometry with dual-U(1) holonomy and torsion quantization, framed for ledger closure.

P57QMU Metrology and Experimental Protocols: Reference Realizations, Calibration Chains, and APM Benchmarks

D.W. Thomson III • DOI: 10.5281/zenodo.17478591

Provides reference realizations and calibration chains for QMU, emphasizing benchmark identities and repeatable experimental protocols.

P58APM Experimental Benchmarks: A Proposal for Falsifiable Tests in QMU

D.W. Thomson III • DOI: 10.5281/zenodo.17509432

Curates an explicit benchmark suite for falsifiable APM tests, presenting a ledger-first structure for measurement and comparison.

P59Hydrogenic Spectra in Proton-Base QMU: Series Collapse and the Universal Holonomy Factor

D.W. Thomson III • DOI: 10.5281/zenodo.17532174

Analyzes hydrogenic spectral structure in proton-base QMU and highlights a universal holonomy factor as a unifying spectral control.

P60Geometric Foundations of Particle Masses in the Aether Physics Model: Torsion Sign Reversal, Holonomy-Derived Mass Ratios, and Closed-System Implications for Space Manipulation

D.W. Thomson III • DOI: 10.5281/zenodo.17544759

Derives particle-mass ratios from holonomy and torsion sign reversal, and discusses implications for closed-system control concepts.

P61High-Z Hydrogenic Lock-Test up to Fe(25+): Persistence of Universal Holonomy under Relativistic Scale-Up

D.W. Thomson III • DOI: 10.5281/zenodo.17547507

Proposes a high-Z hydrogenic “lock test” (to Fe(25+)) to evaluate whether universal holonomy persists under relativistic scale-up.

P62The Unified APM Wave Sector: Transverse-Rotational and Longitudinal-Scalar Aether Modes (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17551473

Defines the APM wave sector with transverse-rotational and longitudinal-scalar modes, supplying QMU-native dispersion benchmarks.

P63Unified Field Sector of the Aether Physics Model: Lagrangian Formulation, Equations of Motion, and Metrological Ledger Tests (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17595965

Presents a unified-field Lagrangian and equations of motion for APM, coupled to metrological ledger tests designed for falsifiability.

P64QMU Curl as a Magnet Hardness Index: A Ledger-First Analysis of Magnetic Anisotropy Materials

D.W. Thomson III • DOI: 10.5281/zenodo.17603743

Introduces curl as a practical “magnet hardness” index and applies it ledger-first to anisotropy materials and measurement workflows.

P65APM Post-Newtonian and Solar-System Tests (QMU): Perihelion, Shapiro, Frame-Dragging, and Light Bending

D.W. Thomson III • DOI: 10.5281/zenodo.17603482

Derives post-Newtonian and solar-system test predictions in QMU, emphasizing perihelion, Shapiro delay, frame dragging, and light bending.

P66Aether-Driven Nonlinear Harmonic Generation in Photonic Chips: A QMU Interpretation of Passive Frequency Multiplication

D.W. Thomson III • DOI: 10.5281/zenodo.17625637

Interprets passive frequency multiplication and nonlinear harmonic generation in photonics through an Aether/QMU ledger lens.

P67QMU–SI Translation and the APM Reference Ledger: Constants, Conversions, and Benchmark Identities

D.W. Thomson III • DOI: 10.5281/zenodo.17624473

Provides translation rules, constants, and benchmark identities linking QMU to SI cross-checks while keeping ledger-first reporting.

P68Aether--Plasma Coupling in the Aether Physics Model: QMU MHD Equations, Stability, and Laboratory Experiments

D.W. Thomson III • DOI: 10.5281/zenodo.17620614

Develops QMU-native MHD-style equations for Aether–plasma coupling, emphasizing stability conditions and laboratory experiments.

P69A Strontium Titanate Crystal Sphere with Oriented Cobalt Ferrite Inclusions: A QMU–APM Experimental Test Instrument Based on Rotating Magnetic Field Encoding

D.W. Thomson III • DOI: 10.5281/zenodo.17620235

Proposes a strontium-titanate sphere with oriented magnetic inclusions as an APM/QMU test instrument using rotating-field encoding.

P70APM Nuclear Shells from Holonomy: QMU Curvature–Torsion Quantization, Nuclear g-Factors, and the Vajra Periodic Mapping

D.W. Thomson III • DOI: 10.5281/zenodo.17632747

Builds nuclear shell structure from holonomy with curvature–torsion quantization and discusses implications for nuclear g-factors.

P71A QMU-Ledger Derivation of the Nuclear Binding Length: Holonomic Twist as the Origin of the Mass Deficit (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17636426

Derives a nuclear binding length from holonomic twist and frames the mass deficit as a closed-system ledger consequence.

P72Aether Metrology with STEM--EELS: Experimental Determination of Curl, Aether Rotation, and Magnetic Flux Units (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17663152

Proposes STEM–EELS as an experimental pathway to determine curl, Aether rotation, and magnetic flux units in a QMU calibration chain.

P73The Maxwell–Aether Ledger in QMU: Curl, Perm, and the Geometry of Coils

D.W. Thomson III • DOI: 10.5281/zenodo.17666353

Develops coil geometry and electromagnetic relations in a Maxwell–Aether ledger, highlighting curl/perm roles in QMU form.

P74The Aether-Unit Maxwell Ledger: Unifying Electrodynamics without Permittivity or Permeability

D.W. Thomson III • DOI: 10.5281/zenodo.17667076

Recasts electrodynamics in an Aether-unit ledger that removes permittivity/permeability as primary quantities in favor of geometric closure.

P75Phonon Magnetic Moments in QMU: Curl-Weighted Time-Frequency Modes in the Aether Physics Model

D.W. Thomson III • DOI: 10.5281/zenodo.17683756

Introduces phonon magnetic moments within APM using curl-weighted time-frequency modes and outlines measurable condensed-matter signatures.

P76Reference Tables for Quantum Measurement Unit (QMU) Conversions: CGS and MKS Systems

D.W. Thomson III • DOI: 10.5281/zenodo.17683574

Provides conversion reference tables and operational guidance for bridging QMU with standard unit systems as a verification layer.

P77Directional Curl-Gradient Interferometry and General Relativity in the Aether Physics Model (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17691395

Proposes interferometric tests sensitive to directional curl gradients and discusses how GR-limit behavior is expected within APM/QMU.

P78Galactic Center Nonthermal Radio Filaments in QMU: Aether Torsion, Relativistic Potential, and Length--Density Ledgers

D.W. Thomson III • DOI: 10.5281/zenodo.17849476

Applies torsion and length–density ledgers to Galactic Center filaments, framing morphology and field signatures in QMU terms.

P79Matter--Aether Tensor Equation and the Electrical Complement of Gravity (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17833066

Presents a tensor-level relationship between matter and Aether fields and develops an “electrical complement” framing for gravity in QMU.

P80Mass--Energy Ledgers in QMU and Relativity: Constructive Aether Geometry versus Principle Theory

D.W. Thomson III • DOI: 10.5281/zenodo.17822454

Compares ledger-first mass–energy closure to relativity-style principle formulations, emphasizing constructive geometry and testable identities.

P81Cardioid--Toroidal Radius Ledger in QMU: Aether Dipoles, Nucleon Holonomy, and Quadrupole Structure

D.W. Thomson III • DOI: 10.5281/zenodo.17793189

Develops a cardioid–toroidal radius ledger for Aether dipoles and nucleon holonomy, with implications for quadrupole structure.

P82A Present-Moment Singularity in an Eternal Universe: Chronovibration, Time Symmetry, and the Rejection of Linear Time in the Aether Physics Model

D.W. Thomson III • DOI: 10.5281/zenodo.17850656

Develops a time-symmetry and chronovibration-based cosmological framing emphasizing an eternal universe and a “present-moment” singularity concept.

P83Torsion Filament Law in QMU: Predicting Number, Spacing, and Angles Around Supermassive Objects

D.W. Thomson III • DOI: 10.5281/zenodo.17873881

Introduces a torsion-filament law intended to predict filament counts, spacing, and angular structure around supermassive sources.

P84Superconducting Electron Pair Ledger in QMU: Aether Dipoles, Chronovibration, and Magnetic Cancellation

D.W. Thomson III • DOI: 10.5281/zenodo.17886299

Develops a superconducting pair ledger using Aether dipoles and chronovibration, emphasizing magnetic cancellation and measurable constraints.

P85Torsion Filament Law Applied to Intergalactic Filaments: Predicting Substructures and Helicity in the Cosmic Web

D.W. Thomson III • DOI: 10.5281/zenodo.17888143

Extends torsion-filament predictions to the cosmic web, focusing on substructure counts and helicity signatures in intergalactic filaments.

P86Bipolar Trumpet Coils as QMU Toy Models for Black Hole Torsion Filaments and Polar Jets (Analog Torsion)

D.W. Thomson III • DOI: 10.5281/zenodo.17902988

Uses trumpet-coil analogs as toy models to emulate torsion filament and jet-like structure, emphasizing laboratory-accessible signatures.

P87Fine Structure Invariants in QMU: Electron, Nucleon, and Aether Charge Geometry

D.W. Thomson III • DOI: 10.5281/zenodo.17918432

Develops fine-structure invariants in QMU, emphasizing electron/nucleon charge geometry and benchmark identities for comparison.

P88Neutron Beta Budget Closure and Beta Decay in the Aether Physics Model: A Geometric Ledger Bridging to Electroweak Theory

D.W. Thomson III • DOI: 10.5281/zenodo.17924278

Constructs a neutron beta-budget closure ledger and connects the geometric accounting to electroweak-scale observables and lifetimes.

P89Capacity Regulators in the Aether Physics Model: Born–Infeld Magnetic and Mass Bounds (QMU)

D.W. Thomson III • DOI: 10.5281/zenodo.17354080

Develops regulator-style bounds (Born–Infeld-type) for magnetic and mass capacities and frames them as ledger-enforced limits.

P90Dual-U(1) Aether Electrodynamics with Topological Mixing in QMU

D.W. Thomson III • DOI: 10.5281/zenodo.17353425

Presents a dual-U(1) electrodynamics formulation in QMU, emphasizing topological mixing terms and ledger-consistent observables.

P91Loxodromic Packing of Aether Units and the Unity Invariant, U=6pi5

D.W. Thomson III • DOI: 10.5281/zenodo.17352256

Develops a loxodromic packing model for Aether units and introduces a unity invariant intended to constrain geometry and scaling.