Complex dynamics and chaos control of a quantum Stackelberg game with heterogeneous players

Ji Chen
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Abstract

In this research article, we explore the complex dynamics of a quantum Stackelberg game and its chaos control involving players with heterogeneous expectations. We utilize the Iqbal & Toor scheme to quantize the classical Stackelberg game and observe that the first mover advantage is diminished in the quantum version of the game. By examining the game from an evolutionary perspective, where the leader firm employs bounded rational expectations and the follower firm adopts adaptive expectations, we discover that the quantum Stackelberg game exhibits complex behaviors, such as cyclic and chaotic states. The local stability of the quantum game depends on the initial state of the game. Additionally, the occurrence of chaos is delayed in the quantum game. To further investigate, we implement the time-delayed feedback method to control the chaos in the quantum game and demonstrate that the techniques used for controlling the classical game are still effective in the quantum game.
具有异质参与者的量子斯塔克尔伯格博弈的复杂动力学与混沌控制
在这篇研究文章中,我们探讨了量子斯塔克尔伯格博弈的复杂动态及其混沌控制,其中涉及具有异质期望的玩家。我们利用 Iqbal & Toor 方案将经典的斯塔克尔伯格博弈量子化,并观察到在量子版博弈中,先行者的优势被削弱了。通过从进化的角度研究博弈,我们发现量子斯塔克尔伯格博弈表现出复杂的行为,如循环和混沌状态。量子博弈的局部稳定性取决于博弈的初始状态。此外,在量子博弈中,混乱状态的发生是延迟的。为了进一步研究,我们采用延时反馈法来控制量子博弈中的混乱状态,并证明用于控制经典博弈的技术在量子博弈中仍然有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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