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Quantum erasure with causally disconnected choice

机译:因果断开选择的量子擦除

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摘要

The counterintuitive features of quantum physics challenge many common-sense assumptions. In an interferometric quantum eraser experiment, one can actively choose whether or not to erase which-path information (a particle feature) of one quantum system and thus observe its wave feature via interference or not by performing a suitable measurement on a distant quantum system entangled with it. In all experiments performed to date, this choice took place either in the past or, in some delayed-choice arrangements, in the future of the interference. Thus, in principle, physical communications between choice and interference were not excluded. Here, we report a quantum eraser experiment in which, by enforcing Einstein locality, no such communication is possible. This is achieved by independent active choices, which are space-like separated from the interference. Our setup employs hybrid path-polarization entangled photon pairs, which are distributed over an optical fiber link of 55 m in one experiment, or over a free-space link of 144 km in another. No naive realistic picture is compatible with our results because whether a quantum could be seen as showing particle- or wave-like behavior would depend on a causally disconnected choice. It is therefore suggestive to abandon such pictures altogether.
机译:量子物理学的反直觉特征挑战了许多常识性假设。在干涉式量子擦除器实验中,人们可以主动选择是否擦除一个量子系统的哪条路径信息(粒子特征),从而通过对纠缠的遥远量子系统进行适当的测量来观察其波特征是否通过干扰发生。用它。在迄今为止进行的所有实验中,这种选择要么是在过去发生,要么是在某些延迟选择的安排中,在未来的干扰中进行。因此,原则上不排除选择与干扰之间的物理通信。在这里,我们报告了一个量子橡皮擦实验,其中通过强制爱因斯坦局部性,这种通信是不可能的。这是通过独立的主动选择来实现的,这些主动选择与干扰呈空间分隔。我们的设置使用混合路径极化纠缠光子对,它们在一个实验中分布在55 m的光纤链路上,在另一个实验中分布在144 km的自由空间链路上。没有任何幼稚的现实画面与我们的结果相吻合,因为量子是否被视为表现出粒子或波状行为将取决于因果关系的选择。因此建议完全放弃此类图片。

著录项

  • 来源
  • 作者单位

    Department of Electrical Engineering, Yale University, New Haven, CT 06520;

    Max Planck Institute of Quantum Optics, 85748 Garching/Munich, Germany;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria,Vienna Center for Quantum Science and Technology, Faculty of Physics, University of Vienna, Boltzmanngasse 5, A-1090 Vienna, Austria;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria,Vienna Center for Quantum Science and Technology, Faculty of Physics, University of Vienna, Boltzmanngasse 5, A-1090 Vienna, Austria;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria,Vienna Center for Quantum Science and Technology, Faculty of Physics, University of Vienna, Boltzmanngasse 5, A-1090 Vienna, Austria;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria,Vienna Center for Quantum Science and Technology, Faculty of Physics, University of Vienna, Boltzmanngasse 5, A-1090 Vienna, Austria;

    Cavendish Laboratory, University of Cambridge, Cambridge CB3 OHE, United Kingdom;

    Centre for Engineered Quantum Systems and Centre for Quantum Computer and Communication Technology, School of Mathematics and Physics, University of Queensland, Brisbane 4072, Australia;

    Institute for Quantum Computing and Department of Physics and Astronomy, University of Waterloo, Waterloo, ON, Canada N2L 3G1;

    Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, A-1090 Vienna, Austria,Vienna Center for Quantum Science and Technology, Faculty of Physics, University of Vienna, Boltzmanngasse 5, A-1090 Vienna, Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    quantum foundations; quantum optics; quantum information processing;

    机译:量子基础量子光学量子信息处理;
  • 入库时间 2022-08-18 00:39:51

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