化学反应与环境互动催生类量子相干,实现自组织信号传输。
Quantum-like Coherence Derived from the Interaction between Chemical Reaction and Its Environment
- 将化学反应视为开放计算,分子聚集度作执行环境,形成动态耦合系统。
- 个体分子行为(Token)展现自组织临界,集体行为(Type)呈现量子逻辑特征。
- 两类计算互激产生类量子相干,解释酶对生物节律的调控机制。
通过揭示人工智能与天然智能作为计算过程的差异,定义封闭计算与开放计算,并在化学反应中实现开放计算。该过程将计算本身与执行环境逻辑分离又融合,构建可调节波动的系统。将计算建模为化学反应,执行环境建模为与反应环境相互作用的分子聚集度。由此形成反复聚散的反应过程,浓度不再具有显著意义。开放计算分为聚焦单个分子行为的Token计算与聚焦规范行为的Type计算,二者最终构成相互作用关系。其中,Token计算表现出自组织临界现象,Type计算则体现量子逻辑。二者相互作用实现了波动的募集,引发对应于不同希尔伯特空间间量子相干的量子逻辑子空间交互。结果生成脉冲波,实现信号传递。这一现象可称为类量子相干,暗示了调控脉冲波与生化节律的酶的来源。
原文摘要 · Abstract (English)
By uncovering the contrast between Artificial Intelligence and Natural-born Intelligence as a computational process, we define closed computing and open computing, and implement open computing within chemical reactions. This involves forming a mixture and invalidation of the computational process and the execution environment, which are logically distinct, and coalescing both to create a system that adjusts fluctuations. We model chemical reactions by considering the computation as the chemical reaction and the execution environment as the degree of aggregation of molecules that interact with the reactive environment. This results in a chemical reaction that progresses while repeatedly clustering and de-clustering, where concentration no longer holds significant meaning. Open computing is segmented into Token computing, which focuses on the individual behavior of chemical molecules, and Type computing, which focuses on normative behavior. Ultimately, both are constructed as an interplay between the two. In this system, Token computing demonstrates self-organizing critical phenomena, while Type computing exhibits quantum logic. Through their interplay, the recruitment of fluctuations is realized, giving rise to interactions between quantum logical subspaces corresponding to quantum coherence across different Hilbert spaces. As a result, spike waves are formed, enabling signal transmission. This occurrence may be termed quantum-like coherence, implying the source of enzymes responsible for controlling spike waves and biochemical rhythms.
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