
A game-theoretic model of social preference and enlightened self-interest is formulated. Existence of symmetry and duality in the game matrices with altruistic social preference is revealed. The model is able to quantitatively describe the dynamical evolution of altruism in prisoner's dilemma and the regime change in prey-predator dynamics.
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Quantum Physics, Evolutionary games, Condensed Matter (cond-mat), FOS: Physical sciences, enlightened self-interest, Condensed Matter, game matrices, Quantitative Biology - Quantitative Methods, Nonlinear Sciences - Adaptation and Self-Organizing Systems, Biological Physics (physics.bio-ph), FOS: Biological sciences, Physics - Biological Physics, social preference, Quantum Physics (quant-ph), Adaptation and Self-Organizing Systems (nlin.AO), Quantitative Methods (q-bio.QM)
Quantum Physics, Evolutionary games, Condensed Matter (cond-mat), FOS: Physical sciences, enlightened self-interest, Condensed Matter, game matrices, Quantitative Biology - Quantitative Methods, Nonlinear Sciences - Adaptation and Self-Organizing Systems, Biological Physics (physics.bio-ph), FOS: Biological sciences, Physics - Biological Physics, social preference, Quantum Physics (quant-ph), Adaptation and Self-Organizing Systems (nlin.AO), Quantitative Methods (q-bio.QM)
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