Metacognitive particles, mental action and the sense of agency
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arXiv
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| Format: | Preprint |
| Published: |
2024
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| _version_ | 1866910486984916992 |
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| author | Sandved-Smith, Lars Da Costa, Lancelot |
| author_facet | Sandved-Smith, Lars Da Costa, Lancelot |
| contents | This paper articulates metacognition using the language of statistical physics and Bayesian mechanics. Metacognitive beliefs, defined as beliefs about beliefs, find a natural description within this formalism, which allows us to define the dynamics of 'metacognitive particles', i.e., systems possessing metacognitive beliefs. We further unpack this typology of metacognitive systems by distinguishing passive and active metacognitive particles, where active particles are endowed with the capacity for mental actions that update the parameters of other beliefs. We provide arguments for the necessity of this architecture in the emergence of a subjective sense of agency and the experience of being separate from the environment. The motivation is to pave the way towards a mathematical and physical understanding of cognition -- and higher forms thereof -- furthering the study and formalization of cognitive science in the language of mathematical physics. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2405_12941 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Metacognitive particles, mental action and the sense of agency Sandved-Smith, Lars Da Costa, Lancelot Neurons and Cognition Adaptation and Self-Organizing Systems Biological Physics This paper articulates metacognition using the language of statistical physics and Bayesian mechanics. Metacognitive beliefs, defined as beliefs about beliefs, find a natural description within this formalism, which allows us to define the dynamics of 'metacognitive particles', i.e., systems possessing metacognitive beliefs. We further unpack this typology of metacognitive systems by distinguishing passive and active metacognitive particles, where active particles are endowed with the capacity for mental actions that update the parameters of other beliefs. We provide arguments for the necessity of this architecture in the emergence of a subjective sense of agency and the experience of being separate from the environment. The motivation is to pave the way towards a mathematical and physical understanding of cognition -- and higher forms thereof -- furthering the study and formalization of cognitive science in the language of mathematical physics. |
| title | Metacognitive particles, mental action and the sense of agency |
| topic | Neurons and Cognition Adaptation and Self-Organizing Systems Biological Physics |
| url | https://arxiv.org/abs/2405.12941 |