Alexander V Sirotkin
This paper presents a novel theoretical framework integrating evolutionary biology, thermodynamics, and political science to explain how human political systems function as adaptive instruments for fulfilling basic biological requirements. While traditional political theory focuses on ideological, economic, or historical drivers, we argue that political structures are ultimately constrained by the fundamental thermodynamic imperative of living systems: maintaining a low-entropy internal state by maximizing energy income and minimizing metabolic expenditure. We trace a clear hierarchy of behavioral regulators, starting from basic biological needs, through genetic and mimetic mechanisms, to complex sociopolitical institutions. By comparing egalitarian, hierarchical, and democratic systems, we analyze how each system manages the fundamental conflict between individual fitness (driven by egoism and kin selection) and collective fitness (sustained by altruism and cooperation). We hypothesize that democratic systems represent a highly evolved bioenergetic compromise, balancing the individual motivation of hierarchical competition with the resource-sharing stability of egalitarianism. However, we also identify critical biological vulnerabilities in modern democracies, such as dysgenic reproductive trends and susceptibility to populist exploitation of primal instincts. Ultimately, we propose that long-term political stability depends on maintaining a dynamic equilibrium between autocratic mobilization capacity and democratic resource distribution. We further propose a preliminary operational index of bioenergetic efficiency (BEI) alongside Energy Intensity (EI) metrics, reconceptualize political systems along continuous rather than discrete dimensions, and explicitly delineate the explanatory boundaries of the framework relative to institutionalist, cultural-evolutionary, and geographic-determinist alternatives.