Research
Published openly. Cited by DOI.
Every public research record is deposited to an open archive with a permanent identifier and maintained as a machine-readable corpus for both human and AI readers.
Our research describes the configuration space — how coherence, stability, and lead/lag relationships emerge across domains. The Markdown files are the canonical AI-readable versions; the PDFs are the canonical released human artifacts. The current research surface prioritizes the Multi-Cycle audit, the 19-day Type IV comment paper, and the RFS-X development trajectory, followed by the remaining corpus from newest to oldest.
Geometric Signatures of Heliospheric Coherence Events: Preliminary Shape Library from Integrated Multi-Signal Analysis
We present a preliminary shape library of heliospheric coherence pattern events derived from integrated multi-signal analysis of 86 Coherence Pattern Signature (CPS) events across the period 2018–2026. DOI 10.5281/zenodo.19924405
RFS-X: A Multi-Signal Heliospheric Coherence Monitoring System
RFS-X is an integrated multi-signal heliospheric coherence monitoring system that characterizes field behavior across three nested temporal layers: the climate (long-duration background field basin), the song (coherent structured field evolution within that basin), and the note (discrete event or trigger embedded within that evolution). DOI 10.5281/zenodo.19924289
Reality as a Function of Coherence: From Personal Experience to Physical Substrate
We propose that experienced reality emerges from coherence—the degree of phase alignment between an observer's state and the accessible configuration space of the vacuum substrate. DOI 10.5281/zenodo.19403712
Four Modes of Black Hole Behavior: A State-Based Classification Framework
Black holes exhibit a wide range of observable behaviors—from gravitational silence to the most luminous phenomena in the universe—yet no single, coherent taxonomy unifies this diversity across mass scales and observational regimes. DOI 10.5281/zenodo.19037234
Open and proprietary boundary.
The research is open. The computation methodology behind the live instruments — the algorithms that produce field-state values from data — is proprietary. The knowledge is for everyone; the instruments sustain the work that produces it.
Read the open science stance