论文标题

人类的创造力和意识:大脑非凡能源效率的意外后果?

Human Creativity and Consciousness: Unintended Consequences of the Brain's Extraordinary Energy Efficiency?

论文作者

Palmer, T. N.

论文摘要

有人提出,人类的创造力和人类意识都是人类大脑非凡能源效率的后果。尽管有共同的子结构,但分别处理了创造力和意识的主题。有人认为,创造力源于人脑的两种认知模式之间的协同作用(与卡尼曼的系统1和2相吻合)。首先,可用的能量分布在相对较大的神经元网络中。因此,每个活性神经元的能量量是如此之小,以至于此类神经元的操作易受热(最终是量子反应)噪声的影响。在第二个中,可用的能量集中在一个足够小的神经元子集上,以确保确定性操作。讨论了这种协同作用如何导致创造力以及对硅中计算的影响的例证。从讨论自由意志的概念开始,意识的概念是根据对所认为是附近反事实世界的意识来定义的。有人认为,这种意识是源于我们一方面的记忆之间的相互作用,而量子物理机制(与古典物理学不同,附近的反事实世界在神经网络的离子通道中起着必不可少的动力学作用)。与大脑对噪声的敏感性一样,有人认为,在量子物理学在大脑中起作用的情况下,出于能量效率的原因,它这样做。为了说明意识的定义,概述了一个新颖的建议,即为什么量子纠缠显得如此违反直觉。

It is proposed that both human creativity and human consciousness are (unintended) consequences of the human brain's extraordinary energy efficiency. The topics of creativity and consciousness are treated separately, though have a common sub-structure. It is argued that creativity arises from a synergy between two cognitive modes of the human brain (which broadly coincide with Kahneman's Systems 1 and 2). In the first, available energy is spread across a relatively large network of neurons. As such, the amount of energy per active neuron is so small that the operation of such neurons is susceptible to thermal (ultimately quantum decoherent) noise. In the second, available energy is focussed on a small enough subset of neurons to guarantee a deterministic operation. An illustration of how this synergy can lead to creativity with implications for computing in silicon are discussed. Starting with a discussion of the concept of free will, the notion of consciousness is defined in terms of an awareness of what are perceived to be nearby counterfactual worlds in state space. It is argued that such awareness arises from an interplay between our memories on the one hand, and quantum physical mechanisms (where, unlike in classical physics, nearby counterfactual worlds play an indispensable dynamical role) in the ion channels of neural networks. As with the brain's susceptibility to noise, it is argued that in situations where quantum physics plays a role in the brain, it does so for reasons of energy efficiency. As an illustration of this definition of consciousness, a novel proposal is outlined as to why quantum entanglement appears so counter-intuitive.

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