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Quantum Stackelberg duopoly in the presence of correlated noise

机译:存在相关噪声时的量子Stackelberg双头垄断

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We study the influence of entanglement and correlated noise using correlated amplitude damping, depolarizing and phase damping channels on the quantum Stackelberg duopoly. Our investigations show that under the influence of an amplitude damping channel a critical point exists for an unentangled initial state at which firms get equal payoffs. The game becomes a follower advantage game when the channel is highly decohered. Two critical points corresponding to two values of the entanglement angle are found in the presence of correlated noise. Within the range of these limits of the entanglement angle, the game is a follower advantage game. In the case of a depolarizing channel, the payoffs of the two firms are strongly influenced by the memory parameter. The presence of quantum memory ensures the existence of the Nash equilibrium for the entire range of decoherence and entanglement parameters for both the channels. A local maximum in the payoffs is observed which vanishes as the channel correlation increases. Moreover, under the influence of the depolarizing channel, the game is always a leader advantage game. Furthermore, it is seen that the phase damping channel does not affect the outcome of the game.
机译:我们使用量子振幅Stackelberg双寡头上的相关幅度阻尼,去极化和相位阻尼通道研究了纠缠和相关​​噪声的影响。我们的研究表明,在振幅衰减通道的影响下,对于一个无纠缠的初始状态,存在一个临界点,在该状态下,企业可以获得相等的收益。当频道高度解干时,该游戏将成为追随者优势游戏。在存在相关噪声的情况下,发现与两个纠缠角值相对应的两个临界点。在纠缠角的这些限制范围内,该游戏是追随者优势游戏。在去极化通道的情况下,这两个公司的收益受内存参数的强烈影响。量子内存的存在确保了两个通道的退相干和纠缠参数整个范围内纳什均衡的存在。观察到收益的局部最大值随着信道相关性的增加而消失。而且,在去极化通道的影响下,该游戏始终是领导者优势游戏。此外,可以看出,相位阻尼通道不会影响游戏的结果。

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