论文标题

热力学选择:机制和场景

Thermodynamic selection: mechanisms and scenarios

论文作者

Babajanyan, S. G., Koonin, E. V., Allahverdyan, A. E.

论文摘要

热力学选择是以相同能源资源为食的代理和遵守热力学定律之间的间接竞争。我们检查了此选择的场景,其中将代理建模为与两个热浴的热引擎,并从高温浴中提取工作。代理商可以应用不同的工作提取,游戏理论策略,例如最大功率或最大效率。它们也可以具有固定的结构或自适应。根据资源(即高温浴)是无限还是有限的,代理的适应性与工作能力或总提取的工作有关。这两种选择方案分别导致工作算术的效率提高或降低。这些方案是通过植物竞争阳光以及不同ATP生产途径之间的竞争来说明的。我们还表明,某些游戏理论和生态学的一般概念 - 囚犯的困境和最大力量原则 - 源于竞争者的热力学。我们强调适应在开发有效的工作萃取机制中的作用。

Thermodynamic selection is an indirect competition between agents feeding on the same energy resource and obeying the laws of thermodynamics. We examine scenarios of this selection, where the agent is modeled as a heat-engine coupled to two thermal baths and extracting work from the high-temperature bath. The agents can apply different work-extracting, game-theoretical strategies, e.g. the maximum power or the maximum efficiency. They can also have a fixed structure or be adaptive. Depending on whether the resource (i.e. the high-temperature bath) is infinite or finite, the fitness of the agent relates to the work-power or the total extracted work. These two selection scenarios lead to increasing or decreasing efficiencies of the work-extraction, respectively. The scenarios are illustrated via plant competition for sunlight, and the competition between different ATP production pathways. We also show that certain general concepts of game-theory and ecology--the prisoner's dilemma and the maximal power principle--emerge from the thermodynamics of competing agents. We emphasize the role of adaptation in developing efficient work-extraction mechanisms.

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