论文标题
离散和连续物理系统之间的受控量子传送
Controlled quantum teleportation between discrete and continuous physical systems
论文作者
论文摘要
在离散价值状态(DV)和连续价值状态(CV)之间相互作用的量子传送基于量子技术中的特定挑战。在这里,我们考虑了振幅匹配的CV量子量子的控制量子传送的问题,该量子量子量子量子的叠加状态是不同阶段的连贯状态,作为在两个遥远的伙伴爱丽丝和鲍勃之间的真空和单光子光学状态的叠加,并由控制器的同意。为了实现这项任务,我们使用混合三方纠缠状态(离散变量和连续变量状态之间的相互作用)作为相干部分属于爱丽丝的量子资源,而单个光子则属于鲍勃和查理,而CV Qubit则是Alice的处置。离散连续的相互作用是在高度传播束分解器上实现的。我们已经表明,传送忠诚度的完美取决于国家到传送阶段和发件人模式阶段之间的相位差异,我们发现,对于接近0或$π$的差异,几乎可以根据保真度和独立于差异$α$α$和Squeeezing $ $ $ $ $ $ $ $ $ $π$来获得几乎完美控制的量子传送。在实验上,该提出的方案是使用线性光学组件(例如梁拆分器,相位变速器和光子计数器)实施的。
Quantum teleportation of an unknown state basing on the interaction between discrete-valued states (DV) and continuous-valued states (CV) presented a particular challenge in quantum technologies. Here we consider the problem of controlled quantum teleportation of an amplitude-matched CV qubit, encoded by a coherent state of a varied phase as a superposition of the vacuum- and single-photon optical states among two distant partners Alice and Bob, with the consent of controller, Charlie. To achieve this task, we use an hybrid tripartite entangled state (interaction between the discrete and continuous variables states) as the quantum resource where the coherent part belongs to Alice, while the single-photon belongs to Bob and Charlie and the CV qubit is at the disposal of Alice. The discrete-continuous interaction is realized on highly transmissive beam-splitter. We have shown that the perfectly of teleportation fidelity depends on the phase difference between the phase of the state to teleport and the phase of the sender's mode, we found that for a difference which approaches 0 or $π$, near perfect controlled quantum teleportation can be obtained in terms of the fidelity and independently of the amplitude $α$ and the squeezing parameter $ζ$. Experimentally, this proposed scheme has been implemented using linear optical components such as beam splitter, phase shifters and photon counters.