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Quantum cloakings hide electronic devices

机译:量子伪装隐藏电子设备

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摘要

As the modern development of electronic device smaller and smaller, quantum effect would become significant. Thus extending the concept of quantum mechanics into design of new electronic devices becomes more important. Controlling the movement of these electrons plays the central role in this issue. In this work, we propose a new quantum cloaking mechanism which has completely different to the previous work of Liao et al [1]. This mechanism is based on the scattering cancellation and the interplay among the nodal points of partial waves, that one can simultaneously guide the probability flux outside the interior and keep the total scattering cross section negligible. Moreover, we can put any electric devices inside quantum cloaking without affecting outside probability of matter wave. With the analogy between quantum matter waves and classical waves, the concept of our method can be applied in other fields, such as electromagnetic and acoustic systems, etc.
机译:随着现代电子设备的发展越来越小,量子效应将变得越来越重要。因此,将量子力学的概念扩展到新电子设备的设计中变得更加重要。在这些问题中,控制这些电子的运动起着至关重要的作用。在这项工作中,我们提出了一种新的量子隐身机制,该机制与廖等人[1]的先前工作完全不同。这种机制基于散射抵消和部分波的节点之间的相互作用,即可以同时将概率通量引导到内部,并使总散射截面可忽略不计。此外,我们可以将任何电子设备置于量子隐身内部,而不会影响物质波的外部概率。与量子物质波和经典波之间的类比,我们的方法的概念可以应用于其他领域,例如电磁和声学系统等。

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