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Towards Practical Design Rules for Quantum Communications and Quantum Imaging Devices

机译:面向量子通信和量子成像设备的实用设计规则

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摘要

A common syndrome in much of the current quantum optics and quantum computing literature is the casual switching between classical concepts (e.g., geometric rays, electromagnetic waves) and quantum concepts (e.g., state vectors, projection operators). Such ambiguous language can confuse designers not well versed in the deeper subtleties of quantum mechanics, or worse, it can lead to a flawed analysis of new designs for quantum devices. To validate that a quantum device can be constructed with the expected characteristics and that its quantum effects are correctly interpreted, a set of unambiguous design rules would be useful. In this paper we enumerate such a set of easily applied quantum rules in the hope that they might facilitate clearer communication between researchers and system developers in the field. In part, we are motivated by recently reported interferometer results that have not only led to flawed claims about disproving fundamental quantum principles, but have elicited equally flawed counter arguments from supposedly knowledgeable respondents. After one hundred years of testing Einstein's photon, it is alarming that such widespread confusion still persists. Our proposed quantum design rules are presented in a practical diagrammatic style, demonstrating their effectiveness by analyzing several interferometers that have appeared in the recent literature. Application to other quantum devices e.g., quantum ghost imaging, are also discussed. We stress that these rules are entirely quantum in prescription, being particularly appropriate for single-photon devices. Classical optics concepts e.g., refractive index, are not required since they are subsumed by our quantum rules.
机译:当前大多数量子光学和量子计算文献中的常见症状是经典概念(例如几何射线,电磁波)和量子概念(例如状态向量,投影算子)之间的随意切换。这种模棱两可的语言可能会使不熟悉量子力学更深层次微妙知识的设计者感到困惑,或者更糟的是,它可能导致对量子器件新设计的错误分析。为了验证可以构造具有预期特性的量子器件并且正确解释其量子效应,一组明确的设计规则将很有用。在本文中,我们列举了这样一组易于应用的量子规则,希望它们可以促进该领域的研究人员与系统开发人员之间更清晰的交流。在某种程度上,我们受到最近报告的干涉仪结果的鼓舞,这些结果不仅导致对反驳基本量子原理的有缺陷的主张,而且还引来了据称知识渊博的受访者同样有缺陷的反论点。在对爱因斯坦的光子进行一百年的测试之后,令人震惊的是,这种普遍的困惑仍然持续。我们提出的量子设计规则以实用的图表形式呈现,通过分析最近文献中出现的几种干涉仪来证明其有效性。还讨论了对其他量子器件的应用,例如量子重影成像。我们强调这些规则在处方上完全是量子的,特别适用于单光子设备。不需要经典的光学概念,例如折射率,因为它们被我们的量子规则所包含。

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