Victor Stabile

Freedom tech developer. Engineering physicist. Enterpreneur.

On the Physics of Information

We propose a foundational framework in which spacetime, gauge symmetries, and physical dynamics emerge from the constraints of finite information across relational quantum subsystems. By modeling the universe as a network of informational frames connected by locally consistent perspectives, we derive curvature, causal structure, and gauge freedom as consequences of bounded resolution and composability. In the low-resolution limit, informational holonomies yield Einstein’s equations and Yang–Mills dynamics without assuming a smooth background manifold. The framework predicts a conserved entropy budget governing gauge couplings and derives the Standard Model symmetry group as the minimal decomposition consistent with internal saturation. Dark matter emerges as unresolved informational structure deforming external curvature without gauge registration. This approach unifies gravitational and gauge phenomena as entropic constraints on distinguishable correlations and offers falsifiable predictions for the evolution of physical constants and the topology of quantum fields.

A Predicted Constraint Among Gauge Couplings from a New Informational Framework

This article presents a falsifiable prediction from a new informational theory of physics: that the sum of the logarithms of the inverse gauge coupling constants — representing the total entropy cost of distinguishing the three fundamental interactions — remains nearly constant across energy scales. This “entropy budget” is shown to slowly increase in a predictable way as energy rises, reflecting the gradual emergence of new distinguishable structure at finer physical resolution. This behavior is not expected from the Standard Model or grand unification, yet is consistently matched by empirical data across fourteen orders of magnitude. The result offers direct, quantitative support for an underlying informational principle governing the structure of physical interactions.

Atomic Signature Swaps over Nostr

A protocol for atomically exchanging Schnorr signatures using Nostr events developed during Sovereign Engineering SEC-04. It enables some interesting applications on Nostr like getting paid to publish specific events, P2P asset exchanges and more.