System of Eternity
The primary governance-architecture program: continuity, adjudication, evidence boundaries, simulation-bounded claims, and non-terminal institutional revision.
Research archive of QianJun Yu.
Current focus: non-terminal, self-upgrading governance structures that can revise institutional procedure while preserving continuity and resisting capture.
QianJun Yu develops independent theoretical work on systems that must remain coherent without a terminal authority. This site is a public map for the research archive, with Zenodo serving as the record of publication.
The archive is organized for readers who need a clear route into the major papers, evidence packages, datasets, and source materials before opening individual records.
Some readers enter through theory. Others enter through concrete pressure: AI disruption, survival insecurity, wealth concentration, institutional decay, war risk, shared-reality collapse, or long-term stability. The problem-domain layer maps those concerns to the relevant research without treating SOE as empirical validation or a deployed solution.
System of Eternity is the primary public program. Other listed work remains connected research, not an equal claim of maturity or public-readiness.
The primary governance-architecture program: continuity, adjudication, evidence boundaries, simulation-bounded claims, and non-terminal institutional revision.
Connected cognitive-method research for structural reframing, Level Ascension, Impossible-First Reasoning, and cross-domain generativity.
Exploratory speculative-cosmology work on constrained models of density gradients, field interactions, and possible observational deviations.
Complete corpus archived on Zenodo. The publications page separates core frameworks, architecture-model evidence, datasets/source archives, and exploratory work.
SOE materials are working papers, architecture documents, source archives, and architecture-model simulation evidence. They do not present empirical validation, pilot readiness, deployment readiness, cryptographic readiness, real-world node recognition, or Operation Layer freeze.