Research

Connecting physics across every scale

MEG organizes physical structure around energy-density gradient steepness, coherence thresholds, and a universal logarithmic ladder across scales.

Research program

From the quantum domain to the cosmic web

Mass–Energy Gravity treats gravity, motion, and quantization as emergent effects of coherent field structure. The program seeks common mathematical organization across systems usually studied separately.

Its two central structures—the Harmonic Ladder and the Unified Limit—generate hypotheses that can be compared against observations of atoms, phase transitions, planetary atmospheres, compact objects, gravitational waves, lensing systems, and large-scale cosmology.

Core frameworks
01 / Harmonic structure

The Harmonic Ladder

A hydrogen-anchored logarithmic map of allowed field states. Its rungs extend toward the Unified Limit in one direction and the CMB in the other.

02 / Stability boundary

The Unified Limit

The steepest coherent energy-density gradient nature permits. At this boundary, further steepening cannot be sustained, so the field flattens, redistributes, or loses coherent structure.

03 / Fundamental field

Energy-Density Gradients

MEG explains gravity, motion, and structure through differences in energy density. These gradients guide how energy redistributes and how coherent systems respond across every scale.

04 / Coherent structure

Coherent Field Structures

MEG describes matter not as particles, but as QEDGs—coherent radial standing waves of trapped energy whose boundaries determine stability, motion, and transitions between allowed states.

Standard of evidence

A framework built to be tested

A unified account matters only if it makes precise, falsifiable predictions. MEG research is organized to expose assumptions, publish companion mathematics, and identify observations capable of supporting or ruling out each claim.

Explore technical companions