用主观体验结构重构量子力学,让观察者成为系统内在部分。
Beyond the Wavefunction: Qualia Abstraction Language Mechanics and the Grammar of Awareness
- 用意识流建模物理系统,取代传统希尔伯特空间态矢量。
- 将叠加、坍缩、纠缠重新解释为意识结构的动态过程。
- 适合对意识与物理本质关系感兴趣的跨学科研究者。
我们提出一种基于主观体验结构而非外部数学抽象的量子力学形式重构。质性抽象语言(QAL)将物理系统视为由模态、形状和功能效应构成的内省单元序列,而非希尔伯特空间中的态矢量。该方法重新诠释核心量子概念:叠加表现为结构化模糊,坍缩被重构为内省收缩,纠缠则被建模为质性流之间的语义共振。结合名义论哲学与人工智能监督理论的局限性,我们认为量子力学中的观察者悖论并非本体论缺陷,而是一种语言缺失——缺乏对第一人称结构的正式表述。QAL引入此类词汇,提供一个嵌入观察者的形态动力学框架,以内在转化替代抽象投影。我们分析了QAL与内物理方法的一致性,对比其与标准量子解释的差异,并探讨其对后柏拉图主义、以内省为基础的物理学的意义。
原文摘要 · Abstract (English)
We propose a formal reconstruction of quantum mechanics grounded not in external mathematical abstractions, but in the structured dynamics of subjective experience. The Qualia Abstraction Language (QAL) models physical systems as evolving streams of introspective units, structured sequences of modality, shape, and functional effect, rather than as state vectors in Hilbert space. This approach reimagines core quantum concepts: superposition becomes a form of structured ambiguity; collapse is reframed as an introspective contraction; and entanglement is modeled as semantic resonance across streams of qualia. Drawing on insights from nominalist philosophy and oversight theoretic limits in AI, we argue that the observer paradox in quantum mechanics reflects not an ontological lacuna, but a linguistic one: the absence of a formal vocabulary for modeling first person structure. QAL introduces such a vocabulary, providing a morphodynamic framework that embeds the observer within the system and replaces abstract projection with endogenous transformation. We analyze the alignment of QAL with endophysical approaches, contrast it with standard interpretations of quantum theory, and explore its implications for a post Platonist, introspectively grounded physics.
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