| _version_ | 1866901192281423872 |
|---|---|
| author | Eğilmez, Direnç |
| author_facet | Eğilmez, Direnç |
| contents | <p>This paper introduces <strong>DiVanName</strong>, an experimental poetic framework that integrates Sufi metaphysics, fractal geometry, and recursive linguistic minimalism. Unlike conventional poetics that rely on syntactic complexity and metaphor, DiVanName constructs meaning procedurally using only proper names (Nominal Semantics) and recursive primitives. The framework postulates that a constrained lexicon, devoid of verbs and conjunctions, can generate coherent metaphysical narratives through adjacency and semantic field overlap. To validate this hypothesis, a multi-stage <strong>Computational Interpretation Experiment</strong> was conducted using a Large Language Model (LLM). The results demonstrate that even in the absence of semantic context, artificial cognitive agents identify objective structural cohesion, rhythmic alliteration patterns (the "B-Cluster"), and emergent ontological narratives within the text. This study suggests that metaphysical meaning is not merely subjective interpretation but a structural property of fractal semantic arrangements.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17910973 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | DiVanName: A Fractal Ontological Poetics Validated by Computational Interpretation Eğilmez, Direnç Fractal Poetics Nominal Semantics Computational Poetics Sufi Metaphysics Recursive Ontology AI Interpretation Digital Humanities <p>This paper introduces <strong>DiVanName</strong>, an experimental poetic framework that integrates Sufi metaphysics, fractal geometry, and recursive linguistic minimalism. Unlike conventional poetics that rely on syntactic complexity and metaphor, DiVanName constructs meaning procedurally using only proper names (Nominal Semantics) and recursive primitives. The framework postulates that a constrained lexicon, devoid of verbs and conjunctions, can generate coherent metaphysical narratives through adjacency and semantic field overlap. To validate this hypothesis, a multi-stage <strong>Computational Interpretation Experiment</strong> was conducted using a Large Language Model (LLM). The results demonstrate that even in the absence of semantic context, artificial cognitive agents identify objective structural cohesion, rhythmic alliteration patterns (the "B-Cluster"), and emergent ontological narratives within the text. This study suggests that metaphysical meaning is not merely subjective interpretation but a structural property of fractal semantic arrangements.</p> |
| title | DiVanName: A Fractal Ontological Poetics Validated by Computational Interpretation |
| topic | Fractal Poetics Nominal Semantics Computational Poetics Sufi Metaphysics Recursive Ontology AI Interpretation Digital Humanities |
| url | https://doi.org/10.5281/zenodo.17910973 |