Delayed-Choice Quantum Erasers and the Einstein-Podolsky-Rosen Paradox

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
Dah-Wei Chiou
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Abstract

Considering the delayed-choice quantum eraser using a Mach-Zehnder interferometer with a nonsymmetric beam splitter, we explicitly demonstrate that it shares exactly the same formal structure with the Einstein-Podolsky-Rosen-Bohm (EPR-Bohm) experiment. Therefore, the effect of quantum erasure can be understood in terms of the standard EPR correlation. Nevertheless, the quantum eraser still raises a conceptual issue beyond the standard EPR paradox, if counterfactual reasoning is taken into account. Furthermore, the quantum eraser experiments can be classified into two major categories: the entanglement quantum eraser and the Scully-Drühl-type quantum eraser. These two types are formally equivalent to each other, but conceptually the latter presents a “mystery” more prominent than the former. In the Scully-Drühl-type quantum eraser, the statement that the which-way information can be influenced by the delayed-choice measurement is not purely a consequence of counterfactual reasoning but bears some factual significance. Accordingly, it makes good sense to say that the “record” of the which-way information is “erased” if the potentiality to yield a conclusive outcome that discriminates the record is eliminated by the delayed-choice measurement. We also reconsider the quantum eraser in the many-worlds interpretation (MWI), making clear the conceptual merits and demerits of the MWI.

延迟选择量子擦除器和爱因斯坦-波多尔斯基-罗森悖论
考虑使用带有非对称分束器的马赫-曾达干涉仪的延迟选择量子擦除,我们明确地证明了它与爱因斯坦-波多尔斯基-罗森-玻姆(epr -玻姆)实验具有完全相同的形式结构。因此,量子擦除效应可以用标准EPR相关来理解。然而,如果考虑到反事实推理,量子擦除器仍然提出了一个超越标准EPR悖论的概念问题。此外,量子擦除实验可分为两大类:纠缠量子擦除和scully - drichl型量子擦除。这两种类型在形式上是相互等价的,但在概念上,后者呈现出比前者更突出的“神秘”。在scully - drichl型量子擦除器中,延迟选择测量对信息影响方向的陈述并非纯粹是反事实推理的结果,而是具有一定的事实意义。因此,如果延迟选择测量消除了产生歧视性记录的结论性结果的可能性,那么说哪条信息的“记录”被“擦除”是很有意义的。我们还重新考虑了多世界解释(MWI)中的量子擦除器,明确了MWI在概念上的优点和缺点。
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来源期刊
CiteScore
2.50
自引率
21.40%
发文量
258
审稿时长
3.3 months
期刊介绍: International Journal of Theoretical Physics publishes original research and reviews in theoretical physics and neighboring fields. Dedicated to the unification of the latest physics research, this journal seeks to map the direction of future research by original work in traditional physics like general relativity, quantum theory with relativistic quantum field theory,as used in particle physics, and by fresh inquiry into quantum measurement theory, and other similarly fundamental areas, e.g. quantum geometry and quantum logic, etc.
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