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消失(又重现)的粒子之谜

The Case of the Disappearing (and Re-Appearing) Particle.

作者信息

Aharonov Yakir, Cohen Eliahu, Landau Ariel, Elitzur Avshalom C

机构信息

School of Physics and Astronomy, Tel Aviv University, Tel-Aviv, 6997801, Israel.

Schmid College of Science, Chapman University, Orange, CA, 92866, USA.

出版信息

Sci Rep. 2017 Apr 3;7(1):531. doi: 10.1038/s41598-017-00274-w.

Abstract

A novel prediction is derived by the Two-State-Vector-Formalism (TSVF) for a particle superposed over three boxes. Under appropriate pre- and post-selections, and with tunneling enabled between two of the boxes, it is possible to derive not only one, but three predictions for three different times within the intermediate interval. These predictions are moreover contradictory. The particle (when looked for using a projective measurement) seems to disappear from the first box where it would have been previously found with certainty, appearing instead within the third box, to which no tunneling is possible, and later re-appearing within the second. It turns out that local measurement (i.e. opening one of the boxes) fails to indicate the particle's presence, but subtler measurements performed on the two boxes together reveal the particle's nonlocal modular momentum spatially separated from its mass. Another advance of this setting is that, unlike other predictions of the TSVF that rely on weak and/or counterfactual measurements, the present one uses actual projective measurements. This outcome is then corroborated by adding weak measurements and the Aharonov-Bohm effect. The results strengthen the recently suggested time-symmetric Heisenberg ontology based on nonlocal deterministic operators. They can be also tested using the newly developed quantum router.

摘要

双态矢量形式理论(TSVF)对叠加在三个盒子上的粒子得出了一个新颖的预测。在适当的前选择和后选择条件下,并且在其中两个盒子之间允许隧穿的情况下,不仅可以得出一个,而且可以得出中间时间间隔内三个不同时刻的三个预测。此外,这些预测是相互矛盾的。粒子(当使用投影测量进行寻找时)似乎从第一个盒子中消失了,而在此之前它肯定会在这个盒子中被找到,反而出现在第三个盒子中,而粒子不可能隧穿到第三个盒子,随后又重新出现在第二个盒子中。事实证明,局部测量(即打开其中一个盒子)未能表明粒子的存在,但对两个盒子一起进行的更精细测量揭示了与粒子质量在空间上分离的非局部模动量。这种情况的另一个进展是,与TSVF的其他依赖于弱测量和/或反事实测量的预测不同,目前的预测使用实际的投影测量。然后通过添加弱测量和阿哈罗诺夫 - 玻姆效应来证实这一结果。这些结果强化了最近基于非局部确定性算符提出的时间对称海森堡本体论。它们也可以使用新开发的量子路由器进行测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/242c/5427996/0c2f27cedb00/41598_2017_274_Fig1_HTML.jpg

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