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Complementarity between Macro- and Micro-Worlds

机译:宏观世界与微观世界之间的互补性

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It is possible for us to recover the concept of physical reality independent of our consciousness. In particular, we may treat any quantum particle as always localized, as it is when it is measured, just like in classical physics. However, we can neither uniquely nor locally (i.e., within local interactions) measure the state of a quantum object by the orbit itself of the (localized) object. And, in general, we need a wave-function ?, which can be considered to obey the Schrodinger equation, regardless of the measurement. These expedients allow us to have a unified view of the macroscopic and microscopic worlds and solve the measurement problem by taking the complexity of the macroscopic detector into account. The existence of W, together with the superposition principle in the Hilbert space, shows a limitation in our reductionistic and mechanistic viewpoint. That is, quantum theory is inevitably formalized from the position in nature from which we measure the outer world. The description of the behavior of the microscopic object is inseparably bound up with the macroscopic environment, confronting us with an idea of the complementarity between the macroscopic and microscopic worlds. This new frontier of thinking seems to give us one of the clues needed to overcome many present-day issues, including the rapid destruction of the global environment.
机译:我们有可能独立于我们的意识而恢复物理现实的概念。尤其是,我们可以像对待传统物理学一样,将任何量子粒子都视为始终局域化,就像测量时一样。但是,我们既不能唯一地也不能局部地(即在局部相互作用中)通过(局部化)物体的轨道本身来测量量子物体的状态。并且,通常,我们需要一个波函数,无论测量如何,都可以将其视为服从薛定inger方程。这些权宜之计使我们对宏观和微观世界有了统一的认识,并通过考虑宏观探测器的复杂性来解决测量问题。 W的存在以及希尔伯特空间中的叠加原理,在我们的还原论和力学观点上显示出局限性。也就是说,量子理论不可避免地从自然界中我们测量外部世界的位置正式化。微观物体行为的描述与宏观环境密不可分,使我们面对的是宏观世界与微观世界之间互补性的观念。这种新的思维领域似乎为我们提供了克服许多当今问题(包括迅速破坏全球环境)所需的线索之一。

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