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High-dimensional Controlled-phase Gate Between a 2(N)-dimensional Photon and N Three-level Artificial Atoms

机译:在2(n) - 二维光子和n三级人工原子之间的高尺寸控制相栅极

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摘要

Higher-dimensional quantum system is of great interest owing to the outstanding features exhibited in the implementation of novel fundamental tests of nature and application in various quantum information tasks. High-dimensional quantum logic gate is a key element in scalable quantum computation and quantum communication. In this paper, we propose a scheme to implement a controlled-phase gate between a 2 (N) -dimensional photon and N three-level artificial atoms. This high-dimensional controlled-phase gate can serve as crucial components of the high-capacity, long-distance quantum communication. We use the high-dimensional Bell state analysis as an example to show the application of this device. Estimates on the system requirements indicate that our protocol is realizable with existing or near-further technologies. This scheme is ideally suited to solid-state integrated optical approaches to quantum information processing, and it can be applied to various system, such as superconducting qubits coupled to a resonator or nitrogen-vacancy centers coupled to a photonic-band-gap structures.
机译:由于在各种量子信息任务中实现了新颖性和应用的新基础测试,高维量子系统具有很大的兴趣。高维量子逻辑门是可伸缩量子计算和量子通信中的关键元件。在本文中,我们提出了一种方案来实现2(n) - 二维光子和N三级人工原子之间的控制相栅极。该高尺寸控制相栅极可用作高容量长距离量子通信的关键部件。我们使用高维铃状态分析作为示例以显示该设备的应用。系统要求的估计表明我们的协议可与现有或接近进一步的技术可实现。该方案非常适合于对量子信息处理的固态集成光学方法,并且可以应用于各种系统,例如耦合到谐振器或氮空位中心的超导Qubits,耦合到光子带 - 带间隙结构。

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