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投影测量到弱相干态基的任意叠加态上。

Projective measurement onto arbitrary superposition of weak coherent state bases.

作者信息

Izumi Shuro, Takeoka Masahiro, Wakui Kentaro, Fujiwara Mikio, Ema Kazuhiro, Sasaki Masahide

机构信息

National Institute of Information and Communications Technology, 4-2-1 Nukui-kita, Koganei, Tokyo, 184-8795, Japan.

Sophia University, 7-1 Kioicho, Chiyoda-ku, Tokyo, 102-8554, Japan.

出版信息

Sci Rep. 2018 Feb 14;8(1):2999. doi: 10.1038/s41598-018-21092-8.

Abstract

One of the peculiar features in quantum mechanics is that a superposition of macroscopically distinct states can exist. In optical system, this is highlighted by a superposition of coherent states (SCS), i.e. a superposition of classical states. Recently this highly nontrivial quantum state and its variant have been demonstrated experimentally. Here we demonstrate the superposition of coherent states in quantum measurement which is also a key concept in quantum mechanics. More precisely, we propose and implement a projection measurement onto an arbitrary superposition of two weak coherent states in optical system. The measurement operators are reconstructed experimentally by a novel quantum detector tomography protocol. Our device is realized by combining the displacement operation and photon counting, well established technologies, and thus has implications in various optical quantum information processing applications.

摘要

量子力学的一个独特特征是宏观上不同状态的叠加能够存在。在光学系统中,这一点通过相干态叠加(SCS)得以凸显,即经典态的叠加。近来,这种高度非平凡的量子态及其变体已通过实验得到证实。在此,我们展示了量子测量中的相干态叠加,这也是量子力学中的一个关键概念。更确切地说,我们提出并在光学系统中实现了对两个弱相干态任意叠加态的投影测量。测量算符通过一种新颖的量子探测器层析成像协议进行实验重构。我们的装置通过将位移操作与光子计数(成熟的技术)相结合得以实现,因此在各种光学量子信息处理应用中具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/658a/5813249/a7a7cdb38842/41598_2018_21092_Fig1_HTML.jpg

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