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One-step entanglements generation on distant superconducting resonators in the dispersive regime

机译:在分散制度中远方超导谐振器的一步纠缠在一起

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We present a scalable quantum-bus-based device for generating the entanglement on photons in distant superconducting resonators (SRs). The device is composed of some one-dimensional (1D) SRs r(j) coupled to the quantum bus (another common resonator R) in its different positions assisted by superconducting quantum interferometer devices which are used to tune the coupling strengths between r(j) and R. By using the technique for catching and releasing a photon state in a 1D SR, it can work as an entanglement generator or a node in quantum communication. To demonstrate the performance of this device, we propose a one-step scheme to generate high-fidelity Bell state on photons in two distant SRs. It works in the dispersive regime of r(j) and R, which enables us to extend it to generate high-fidelity multi-Bell states on different resonator pairs simultaneously.
机译:我们提出了一种可伸缩量子总线的装置,用于在远处超导谐振器(SRS)中产生缠结的光子。 该器件由耦合到量子总线(另一个公共谐振器R)的某种一维(1D)SRS R(J)组成,其在其不同的位置通过超导量子干涉仪器件辅助,该装置用于调整R(J的耦合强度) 通过使用用于在1D SR中捕获和释放光子状态的技术,它可以作为缠结发生器或量子通信中的节点。 为了展示该设备的性能,我们提出了一个步骤方案,以在两个远处SRS中的光子上产生高保真钟状态。 它适用于R(j)和r的分散制度,这使我们能够将其扩展以同时在不同的谐振器对上产生高保真多喇叭状态。

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