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Implementation of controlled quantum teleportation with an arbitrator for secure quantum channels via quantum dots inside optical cavities

机译:使用仲裁器实现受控量子隐形传态以通过光腔内部的量子点确保安全的量子通道

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摘要

We propose a controlled quantum teleportation scheme to teleport an unknown state based on the interactions between flying photons and quantum dots (QDs) confined within single- and double-sided cavities. In our scheme, users (Alice and Bob) can teleport the unknown state through a secure entanglement channel under the control and distribution of an arbitrator (Trent). For construction of the entanglement channel, Trent utilizes the interactions between two photons and the QD-cavity system, which consists of a charged QD (negatively charged exciton) inside a single-sided cavity. Subsequently, Alice can teleport the unknown state of the electron spin in a QD inside a double-sided cavity to Bob’s electron spin in a QD inside a single-sided cavity assisted by the channel information from Trent. Furthermore, our scheme using QD-cavity systems is feasible with high fidelity, and can be experimentally realized with current technologies.
机译:我们提出了一种受控的量子隐形传态方案,该方案基于飞行的光子与局限在单侧和双面腔内的量子点(QD)之间的相互作用来隐形传送未知状态。在我们的方案中,用户(爱丽丝和鲍勃)可以在仲裁员(特伦特)的控制和分配下,通过安全的纠缠通道传送未知状态。为了构建纠缠通道,Trent利用两个光子和QD腔系统之间的相互作用,该系统由单面腔内的带电QD(带负电的激子)组成。随后,在来自Trent的通道信息的帮助下,爱丽丝可以将双面腔内QD中电子自旋的未知状态传送到单面腔内QD中鲍勃的电子自旋中。此外,我们使用QD腔系统的方案具有很高的保真度,并且可以通过现有技术通过实验实现。

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