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Quantum remote sensing with asymmetric information gain

机译:Quantum Remote Sension,不对称信息增益

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Typically, the aim of quantum metrology is to sense target fields with high precision utilizing quantum properties. Unlike the typical aim, in this paper, we use quantum properties for adding a functionality to quantum sensors. More concretely, we propose a delegated quantum sensor (a client-server model) with security inbuilt. Suppose that a client wants to measure some target fields with high precision, but he/she does not have any high-precision sensor. This leads the client to delegate the sensing to a remote server who possesses a high-precision sensor. The client gives the server instructions about how to control the sensor. The server lets the sensor interact with the target fields in accordance with the instructions, and then sends the sensing measurement results to the client. In this case, since the server knows the control process and readout results of the sensor, the information of the target fields is available not only for the client but also for the server. We show that, by using an entanglement between the client and the server, an asymmetric information gain is possible so that only the client can obtain sufficient information on the target fields. In our scheme, the server generates the entanglement between a solid-state system (that can interact with the target fields) and a photon, and sends the photon to the client. On the other hand, the client is required to possess linear-optics elements only including wave plates, polarizing beam splitters, and single-photon detectors. Our scheme is feasible with the current technology, and our results pave the way for an application of quantum metrology.
机译:通常,量子计量的目的是利用量子特性感测具有高精度的目标场。与典型目的不同,在本文中,我们使用量子属性来向量子传感器添加功能。更具体地说,我们提出了一个带有安全内置安全性的委派量子传感器(客户端 - 服务器模型)。假设客户端想要测量具有高精度的某些目标字段,但他/她没有任何高精度传感器。这导致客户端将感应委派给拥有高精度传感器的远程服务器。客户端提供有关如何控制传感器的服务器说明。服务器允许传感器根据指令与目标字段相互作用,然后将传感测量结果发送给客户端。在这种情况下,由于服务器知道传感器的控制过程和读出结果,因此目标字段的信息不仅适用于客户端,还可用于服务器。我们示出,通过使用客户端和服务器之间的纠缠,不对称信息增益是可能的,因此仅客户端可以获得对目标字段的足够的信息。在我们的方案中,服务器生成固态系统(可以与目标字段交互)和光子之间的缠结,并将光子发送到客户端。另一方面,客户需要仅包括Linear-Octics元件,包括波形板,偏振束分离器和单光子探测器。我们的计划与目前的技术是可行的,我们的结果为应用量子计量的应用铺平了道路。

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