Description This work proposes a novel explanation for the matter–antimatter asymmetry based on the Generative Theory of Information (GTi). In contrast to conventional baryogenesis scenarios, which rely on CP violation, new fields, or extensions of early Universe physics, GTi treats reality as an iteratively generated structure in which space, time, and physical laws emerge from underlying generative rules. Within this framework, matter and antimatter correspond to two distinct classes of generative patterns that differin stability, generative cost, and susceptibility to fluctuations. Because global symmetry is not fundamentalat the generative level, these pattern classes need not be equally stable or equally likely to persist through early iterations of the generative process. The paper develops a mechanism in which a minimal generative complexity threshold leads to preferential stabilization of matter like patterns and suppression of antimatter like patterns before the emergenceof physical interactions. As a result, the baryon asymmetry arises as a generative selection effect rather thana dynamical relic of CP violating processes. This framework predicts a minimal, nonzero matter–antimatter asymmetry, allows for rare unstable “islands” of antimatter, and provides a pre physical explanation forthe absence of annihilation signatures in the cosmic microwave background. The generative mechanism presented here offers a new conceptual route toward understanding matter dominance in the Universeand suggests testable implications for cosmology and fundamental theory. Author: Waldemar Superson
Waldemar Superson (Fri,) studied this question.