This preprint presents Part II of the Life Ray Theory research program, introducing a formal mathematical framework for modeling encounter dynamics, fragment-based memory structures, and relational processes. Building on the conceptual foundations established in Part I, this work defines the core formal objects of the theory, including agents, life rays, shared events, and fragment chains. It further develops operator-based mechanisms such as transduction and integration, as well as quantitative structures for salience and temporal asymmetry. The framework is intentionally defined at an abstract and phenomenological level. It does not directly model neural or physiological processes, but instead provides a structural representation of experience that may later be connected to cognitive and neurobiological models. This work represents an intermediate step in a four-part research program. Subsequent parts will focus on computational modeling, simulation, and empirical operationalization. This is an independent conceptual preprint and a work in progress.
Ngoc Son Peter Ngo (Fri,) studied this question.