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Quantum-mechanical machinery for rational decision-making in classical guessing game

机译:古典猜谜游戏中用于理性决策的量子机械

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摘要

In quantum game theory, one of the most intriguing and important questions is, “Is it possible to get quantum advantages without any modification of the classical game?” The answer to this question so far has largely been negative. So far, it has usually been thought that a change of the classical game setting appears to be unavoidable for getting the quantum advantages. However, we give an affirmative answer here, focusing on the decision-making process (we call ‘reasoning’) to generate the best strategy, which may occur internally, e.g., in the player’s brain. To show this, we consider a classical guessing game. We then define a one-player reasoning problem in the context of the decision-making theory, where the machinery processes are designed to simulate classical and quantum reasoning. In such settings, we present a scenario where a rational player is able to make better use of his/her weak preferences due to quantum reasoning, without any altering or resetting of the classically defined game. We also argue in further analysis that the quantum reasoning may make the player fail, and even make the situation worse, due to any inappropriate preferences.
机译:在量子博弈论中,最有趣和最重要的问题之一是:“在不对经典博弈进行任何修改的情况下,是否有可能获得量子优势?”到目前为止,这个问题的答案在很大程度上是负面的。到目前为止,通常认为,为了获得量子优势,经典游戏设置的改变似乎是不可避免的。但是,我们在这里给出肯定的答案,着重于制定最佳策略的决策过程(我们称之为“推理”),这种策略可能发生在内部(例如,玩家的大脑)。为了说明这一点,我们考虑一个经典的猜谜游戏。然后,我们在决策理论的背景下定义一个单人推理问题,其中的机械过程旨在模拟经典推理和量子推理。在这种情况下,我们提出了一个场景,在这种情况下,理性的玩家能够由于量子推理而更好地利用他/她的弱偏好,而无需更改或重置经典定义的游戏。我们还在进一步的分析中指出,由于任何不适当的偏好,量子推理可能会使玩家失败,甚至使情况变得更糟。

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