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A graph-based reflexive artificial chemistry

机译:基于图的自反人工化学

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摘要

The conceptual divide between formal systems of computation and abstract models of chemistry is considered. As an attempt to concretely bridge this divide, a formalism is proposed that describes a constructive artificial chemistry on a space of directed graph structures. The idea for the formalism originates in computer science theory, with the traditional abstraction of a physical machine, the finite-state machine (FSM). In the FSM, the machine (state-transition graph) and input string (series of binary digits) are fundamentally distinct objects, separated by nature of the underlying formalism. This distinction is dissolved in the proposed system, resulting in a construction process that is r eflexive: graphs interact with their own topological structure to generate a product. It is argued that this property of reflexivity is a key element missing from earlier model chemistries. Examples demonstrate the continuous emergence complex self-similar topologies, novel reaction pathways, and seemingly open-ended diversity. Implications of these findings are discussed.
机译:考虑了形式化计算系统和化学抽象模型之间的概念鸿沟。为了具体弥合这种鸿沟,提出了形式主义,该形式主义描述了有向图结构空间上的一种构造性人工化学。形式主义的思想起源于计算机科学理论,它是对物理机器的传统抽象,即有限状态机(FSM)。在FSM中,机器(状态转换图)和输入字符串(二进制数字系列)是根本上不同的对象,由底层形式主义的性质分开。这种区别在拟议的系统中得到解决,从而导致了构造过程的灵活性:图形与其自身的拓扑结构交互以生成乘积。有人认为,这种自反性是早期模型化学中缺少的关键要素。实例说明了不断出现的复杂的自相似拓扑,新颖的反应途径以及看似开放的多样性。讨论了这些发现的含义。

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