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Controlled Quantum Secure Direct Communication with Local Separate Measurements in Cavity QED

机译:腔QED中具有局部独立测量的受控量子安全直接通信

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摘要

In this paper, we proposed an experimentally feasible new scheme for controlled quantum secure direct communication in cavity quantum electrodynamics without apparent joint Bell-state measurement. According to the results measured by the sender and the controller, the receiver can obtain different secret messages in a deterministic way using GHZ state as the quantum channel with unit successful probability if controller cooperates with it. In the communication processes, with the assistance of a strong classical driving field, the interactions between atoms and a single-mode nonresonant cavity substitute the generalized joint Bell-basis measurements. So this scheme only need separate measurements. In addition, the scheme is insensitive to the cavity decay and the thermal field. The discussion of the scheme indicates that it is simple and realizable with present technology.
机译:在本文中,我们提出了一种在实验上可行的新方案,用于在腔体量子电动力学中控制量子安全的直接通信,而无需进行明显的联合贝尔状态测量。根据发送者和控制器测量的结果,如果控制器配合使用,则接收器可以使用GHZ状态作为具有单位成功概率的量子通道,以确定的方式获得不同的秘密消息。在通信过程中,借助强大的经典驱动场,原子与单模非谐振腔之间的相互作用替代了广义联合贝尔基测量。因此,该方案仅需要单独的测量。另外,该方案对腔衰变和热场不敏感。对方案的讨论表明,该方案是简单的,并且可以用当前技术实现。

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