Wang Guan-Yu, Liu Qian, Wei Hai-Rui, Li Tao, Ai Qing, Deng Fu-Guo
Department of Physics, Applied Optics Beijing Area Major Laboratory, Beijing Normal University, Beijing 100875, China.
School of Mathematics and Physics, University of Science and Technology Beijing, Beijing 100083, China.
Sci Rep. 2016 Apr 12;6:24183. doi: 10.1038/srep24183.
We present two deterministic schemes for constructing a CNOT gate and a Toffoli gate on photon-atom and photon-atom-atom hybrid quantum systems assisted by bad cavities, respectively. They are achieved by cavity-assisted photon scattering and work in the intermediate coupling region with bad cavities, which relaxes the difficulty of their implementation in experiment. Also, bad cavities are feasible for fast quantum operations and reading out information. Compared with previous works, our schemes do not need any auxiliary qubits and measurements. Moreover, the schematic setups for these gates are simple, especially that for our Toffoli gate as only a quarter wave packet is used to interact the photon with each of the atoms every time. These atom-cavity systems can be used as the quantum nodes in long-distance quantum communication as their relatively long coherence time is suitable for multi-time operations between the photon and the system. Our calculations show that the average fidelities and efficiencies of our two universal hybrid quantum gates are high with current experimental technology.
我们分别提出了两种确定性方案,用于在由坏腔辅助的光子 - 原子以及光子 - 原子 - 原子混合量子系统上构建一个CNOT门和一个Toffoli门。它们通过腔辅助光子散射实现,并且在具有坏腔的中间耦合区域工作,这降低了其实验实现的难度。此外,坏腔对于快速量子操作和读出信息是可行的。与先前的工作相比,我们的方案不需要任何辅助量子比特和测量。而且,这些门的示意性设置很简单,特别是我们的Toffoli门的设置,因为每次仅使用一个四分之一波包来使光子与每个原子相互作用。这些原子 - 腔系统可用作长距离量子通信中的量子节点,因为它们相对较长的相干时间适用于光子与系统之间的多次操作。我们的计算表明,利用当前的实验技术,我们的两个通用混合量子门的平均保真度和效率都很高。