论文标题

通过经典的随机互动产生完美纠缠的两个和三个量子位状态

Generation of perfectly entangled two and three qubits states by classical random interaction

论文作者

Akram, Javed

论文摘要

这项研究研究了发现哈密顿量的完美纠缠者的可能性,该杂物与目前的几个量子信息平台相对应。但是,在这项研究中,我们使用了从其他量子计算设备中脱颖而出的超导电路,尤其是因为可以通过电容器或微波腔耦合Transmon Qubits,这使我们能够在其设计参数中结合高相干性,快速的盖茨和高灵活性。当前有两个因素限制了超导处理器的性能:定时不匹配和纠缠大门对两个量子的限制。在这项工作中,我们提出了两个Q量的掉期和一个三Q量的弗雷德金门,此外,我们还展示了两到三个可编程的超导量子的完美绝热纠缠产生。此外,在这项研究中,我们还证明了随机去驱动,排放和吸收噪声对量子门和纠缠的影响。数值模拟证明了CSWAP门和$ W $状态的生成可以在一个步骤中完美地实现,在弱耦合条件下,可靠性高。因此,我们的计划可能有助于量子传送,量子通信以及其他一些量子信息处理。

This study examines the possibility of finding perfect entanglers for a Hamiltonian which corresponds to several quantum information platforms of interest at the present time. However, in this study, we use a superconducting circuit that stands out from other quantum-computing devices, especially because Transmon qubits can be coupled via capacitors or microwave cavities, which enable us to combine high coherence, fast gates, and high flexibility in its design parameters. There are currently two factors limiting the performance of superconducting processors: timing mismatch and the limitation of entangling gates to two qubits. In this work, we present a two-qubit SWAP and a three-qubit Fredkin gate, additionally, we also demonstrate a perfect adiabatic entanglement generation between two and three programmable superconducting qubits. Furthermore, in this study, we also demonstrate the impact of random dephasing, emission, and absorption noises on the quantum gates and entanglement. It is demonstrated by numerical simulation that the CSWAP gate and $W$-state generation can be achieved perfectly in one step with high reliability under weak coupling conditions. Hence, our scheme could contribute to quantum teleportation, quantum communication, and some other areas of quantum information processing.

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