No Quantum Process Can Explain the Existence of the Preferred Basis: Decoherence Is Not Universal

H. Inamori
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引用次数: 4

Abstract

Environment induced decoherence, and other quantum processes, have been proposed in the literature to explain the apparent spontaneous selection—out of the many mathematically eligible bases—of a privileged measurement basis that corresponds to what we actually observe. This paper describes such processes, and demonstrates that—contrary to common belief—no such process can actually lead to a preferred basis in general. The key observation is that environment induced decoherence implicitly assumes a prior independence of the observed system, the observer and the environment. However, such independence cannot be guaranteed, and we show that environment induced decoherence does not succeed in establishing a preferred measurement basis in general. We conclude that the existence of the preferred basis must be postulated in quantum mechanics, and that changing the basis for a measurement is, and must be, described as an actual physical process.
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没有量子过程可以解释首选基的存在:退相干不是普遍存在的
环境诱导退相干和其他量子过程,已经在文献中提出,用来解释明显的自发选择——从许多数学上合格的基础中——特权测量基础与我们实际观察到的相对应。本文描述了这样的过程,并证明了——与普遍的看法相反——没有这样的过程实际上可以导致一般的首选基础。关键的观察是,环境诱导退相干隐含地假设了被观察系统、观察者和环境的先验独立性。然而,这种独立性不能保证,我们表明,环境诱导退相干一般不能成功地建立一个首选的测量基础。我们得出的结论是,在量子力学中,必须假定存在首选基,而改变测量的基是,而且必须被描述为一个实际的物理过程。
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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