BT‑PEC: A Triadic-Coupling Theory and Self-Emergent Multi-Paradigm Programming Language

This work proposes the BT‑PEC triadic-coupling origin theory and implements a prototype of self-emergent multi-paradigm programming language. BT‑PEC decomposes complex self-organizing systems into substrate matrix B, temporal evolution matrix T and emergent coupling matrix PEC. Starting from a minimal trusted seed, the language’s full stack (grammar, parser, compiler, VM) cascades and emerges internally via coupling dynamics. It supports imperative, sealed-functional, object-oriented and emergent Omega-block paradigms. A rollback backlash mechanism guarantees safe evolution. The prototype has verified S0–S3 stages; S4–S7 remain theoretical design. This framework differs from conventional handwritten compilers and meta-programming systems, which lack endogenous self-growth of language infrastructure.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23151612
Primary Topic
Logic, programming, and type systems
Type
preprint
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preprint

BT‑PEC: A Triadic-Coupling Theory and Self-Emergent Multi-Paradigm Programming Language

Lihua Lu
Zenodo (CERN European Organization for Nuclear Research)
Logic, programming, and type systems
preprint

BT‑PEC: A Triadic-Coupling Theory and Self-Emergent Multi-Paradigm Programming Language

Lihua Lu
preprint en

Abstract

This work proposes the BT‑PEC triadic-coupling origin theory and implements a prototype of self-emergent multi-paradigm programming language. BT‑PEC decomposes complex self-organizing systems into substrate matrix B, temporal evolution matrix T and emergent coupling matrix PEC. Starting from a minimal trusted seed, the language’s full stack (grammar, parser, compiler, VM) cascades and emerges internally via coupling dynamics. It supports imperative, sealed-functional, object-oriented and emergent Omega-block paradigms. A rollback backlash mechanism guarantees safe evolution. The prototype has verified S0–S3 stages; S4–S7 remain theoretical design. This framework differs from conventional handwritten compilers and meta-programming systems, which lack endogenous self-growth of language infrastructure.

Zenodo (CERN European Organization for Nuclear Research)
Logic, programming, and type systems
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