Revisiting the Gaia Hypothesis: Maximum Entropy, Kauffman's 'Fourth Law' and Physiosemeiosis

Carsten Herrmann-Pillath
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引用次数: 13

Abstract

Recently, Kleidon suggested to analyze Gaia as a non-equilibrium thermodynamic system that continuously moves away from equilibrium, driven by maximum entropy production which materializes in hierarchically coupled mechanisms of energetic flows via dissipation and physical work. I relate this view with Kauffman's 'Fourth Law of Thermodynamics', which I interprete as a proposition about the accumulation of information in evolutionary processes. The concept of physical work is expanded to including work directed at the capacity to work: I offer a twofold specification of Kauffman's concept of an 'autonomous agent', one as a 'self-referential heat engine', and the other in terms of physiosemeiosis, which is a naturalized application of Peirce's theory of signs. The conjunction of these three theoretical sources, Maximum Entropy, Kauffman's Fourth Law, and physiosemeiosis, shows that the Kleidon restatement of the Gaia hypothesis is equivalent to the proposition that the biosphere is generating, processing and storing information, thus directly treating information as a physical phenomenon. There is a fundamental ontological continuity between the biological processes and the human economy, as both are seen as information processing and entropy producing systems. Knowledge and energy are not substitutes, with energy and information being two aspects of the same underlying physical process.
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重新审视盖亚假说:最大熵,考夫曼的“第四定律”和生理减数症
最近,Kleidon建议将Gaia分析为一个不断远离平衡状态的非平衡热力学系统,由最大熵产生驱动,最大熵产生通过耗散和物理功在能量流动的分层耦合机制中实现。我将这一观点与考夫曼的“热力学第四定律”联系起来,我将其解释为关于进化过程中信息积累的命题。物理功的概念被扩展到包括针对工作能力的功:我对考夫曼的“自主代理”概念提供了双重说明,一个是“自我参照的热机”,另一个是生理分裂,这是皮尔斯符号理论的自然应用。最大熵(Maximum Entropy)、考夫曼第四定律(Kauffman’s Fourth Law)和生理分裂(physisemeosis)这三个理论来源的结合表明,Kleidon重述的盖亚假说相当于生物圈正在产生、处理和存储信息的命题,从而直接将信息视为一种物理现象。在生物过程和人类经济之间存在着基本的本体论连续性,因为两者都被视为信息处理和熵产生系统。知识和能量不是替代品,能量和信息是同一基础物理过程的两个方面。
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