No-Go Theorems on Machine Consciousness

Subhash Kak
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Abstract

Creating machines that are conscious is a long-term objective of research in artificial intelligence. This paper looks at this idea with new arguments from physics and logic. Observers have no place in classical physics, and although they play a role in measurement in quantum physics there is no explanation for their emergence within the framework. There is a suggestion that consciousness, which is implicitly a property of the observer, is a consequence of the complexity of specific brain structures, but this is problematic because one associates free will with consciousness, which goes counter to the causal closure of physics. Considering a nested physical system, we argue that even if the system were assumed to have agency, observers cannot exist within it. Since complex systems can be viewed in nested hierarchies, this constitutes a proof against consciousness as a product of complexity, for then we will have nested system of conscious agents. As the existence of consciousness in cognitive agents cannot be denied, the implication is that consciousness belongs to a dimension that is not physical and machine consciousness is unattainable. These ideas are used to take a fresh look at two well-known paradoxes of quantum theory that are important in quantum information theory.
机器意识的不去定理
创造具有意识的机器是人工智能研究的一个长期目标。本文从物理学和逻辑学的角度对这一观点进行了新的论证。观察者在经典物理学中没有地位,尽管它们在量子物理学的测量中发挥作用,但在框架中没有解释它们的出现。有一种观点认为,意识是观察者的一种隐含属性,是特定大脑结构复杂性的结果,但这是有问题的,因为人们将自由意志与意识联系在一起,这与物理学的因果封闭性背道而驰。考虑到一个嵌套的物理系统,我们认为,即使假设系统具有代理,观察者也不能存在于其中。因为复杂的系统可以用嵌套的层次结构来看待,这就证明了意识不是复杂性的产物,因为这样我们就会有一个嵌套的有意识的代理系统。由于意识在认知代理中的存在是不可否认的,这意味着意识属于一个非物理的维度,机器意识是无法实现的。这些想法被用来重新审视量子理论中两个著名的悖论,这两个悖论在量子信息理论中很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.30
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