论文标题

量子测量:观察者与自然之间的游戏?

Quantum measurement: a game between observer and nature?

论文作者

Xin, Lizhi, Xin, Houwen

论文摘要

观察者在量子测量中的作用是什么?显然,观察者准备设备,观察和解释测得的结果。尽管观察者通过设置测量设备会对测量结果产生一定的影响,但我们不认为人类意识会减少波浪包的减少。同样,观察者当然需要用物理含义来解释测得的结果。我们相信,观察者通过与自然玩游戏来建立他们对外部世界的经验,然后根据他们的经验来“解码”性质。我们提出了一种量子决策理论方法来解释观察者在量子测量中的作用,并指出可以优化一组量子决策树(用是/否逻辑回答自然问题的策略)可以通过基于观察者的预期价值的最大化来应对自然挑战;量子决策树可以发现量子实体的动态规则,就像经典力学使用最小动作的原理来获得粒子的轨迹一样,我们使用最大期望值的原理来大致获得量子实体的运动学“轨迹”,从自然的历史“事件”(测量结果);即使我们也可以“重建”量子实体的过去,因为我们不知道量子实体的先前信息,因此很难预测自然的未来。

What is the observer's role in quantum measurement? Obviously, observers prepare the apparatus, observe and interpret the measured results. Although the observer will have a certain influence on the measurement results by setting up the measuring apparatus, we don't believe human consciousness cause reducing of wave packet; also observers are certainly required to interpret the measured results with physical meanings. We believe observers build up their experience of the external world by playing games with nature, and then "decode" the nature based on their experiences. We propose a quantum decision theory approach to explain the role of the observer in quantum measurements, and pointed out that a set of quantum decision trees (strategies to answer natural questions with yes/no logic) can be optimized to deal with the challenges of nature through quantum genetic programming based on maximization of the expected value of the observers; Quantum decision trees can discover the dynamics rules of quantum entities and Just as classical mechanics uses the principle of least action to obtain the trajectories of particles, we use the principle of maximum expected value to approximately obtain the kinematic "trajectories" of quantum entities by learning from natural historical "events" (measured results); even we can "reconstruct" the past of quantum entity, because we don't know the prior information of quantum entity, it is very difficult to predict the future of the nature.

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