MID/QC Applied Substrate Series 30 - Substrate Memory: Persistent Feasibility Encoding via Coherence Retention and Torsional Imprinting

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Auteur principal: Rasque, Chadwick
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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author Rasque, Chadwick
author_facet Rasque, Chadwick
contents <p><span>This paper introduces substrate memory within the MID/QC framework, showing how coherence retention and torsional imprinting encode persistent reaction feasibility. Reaction corridors become memory channels, and gating topology becomes imprint logic. The manuscript explains how substrates retain coherence density and imprint torsional alignment to preserve feasibility states. It reframes memory as a geometric phenomenon, enabling engineered substrates to store reaction history and logic inheritance through topological encoding.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18512928
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle MID/QC Applied Substrate Series 30 - Substrate Memory: Persistent Feasibility Encoding via Coherence Retention and Torsional Imprinting
Rasque, Chadwick
Substrate Memory
Feasibility Encoding
Coherence Retention
Torsional Imprinting
Memory Corridors
Reaction History
Logic Imprinting
Persistent Feasibility
Substrate Logic
Memory Architecture
Physics
Chemistry
Computation
Catalysis
Substrate Theory
Reaction Dynamics
<p><span>This paper introduces substrate memory within the MID/QC framework, showing how coherence retention and torsional imprinting encode persistent reaction feasibility. Reaction corridors become memory channels, and gating topology becomes imprint logic. The manuscript explains how substrates retain coherence density and imprint torsional alignment to preserve feasibility states. It reframes memory as a geometric phenomenon, enabling engineered substrates to store reaction history and logic inheritance through topological encoding.</span></p>
title MID/QC Applied Substrate Series 30 - Substrate Memory: Persistent Feasibility Encoding via Coherence Retention and Torsional Imprinting
topic Substrate Memory
Feasibility Encoding
Coherence Retention
Torsional Imprinting
Memory Corridors
Reaction History
Logic Imprinting
Persistent Feasibility
Substrate Logic
Memory Architecture
Physics
Chemistry
Computation
Catalysis
Substrate Theory
Reaction Dynamics
url https://doi.org/10.5281/zenodo.18512928