论文标题
在电路QED中转移光子猫态QUT的纠缠状态
Transferring entangled states of photonic cat-state qubits in circuit QED
论文作者
论文摘要
我们提出了一种将两个光子猫验量比(CQUBIT)的量子纠缠状态从两个微波腔转移到其他两个微波腔。通过使用四个微波腔与超导通量Qutrit结合的四个微波腔实现。由于使用了四个具有不同频率的空腔,因此腔间串扰大大降低。由于仅使用了一个耦合器QUTRIT,因此将电路资源最小化。纠缠转移仅通过单步操作完成,因此该提案非常简单。耦合器QUTRIT的第三能级在状态转移期间没有填充,因此从较高能量水平的逆转性得到了极大的抑制。我们的数值模拟表明,使用当前电路QED技术,可行的两个传输线谐振器向其他两个传输线谐振器的高保真转移是可行的。该建议是通用的,可以应用于在各种物理系统(例如四个微波或光腔)中完成相同的任务,这些系统与自然或人工三级原子耦合。
We propose a method for transferring quantum entangled states of two photonic cat-state qubits (cqubits) from two microwave cavities to the other two microwave cavities. This proposal is realized by using four microwave cavities coupled to a superconducting flux qutrit. Because of using four cavities with different frequencies, the inter-cavity crosstalk is significantly reduced. Since only one coupler qutrit is used, the circuit resources is minimized. The entanglement transfer is completed with a single-step operation only, thus this proposal is quite simple. The third energy level of the coupler qutrit is not populated during the state transfer, therefore decoherence from the higher energy level is greatly suppressed. Our numerical simulations show that high-fidelity transfer of two-cqubit entangled states from two transmission line resonators to the other two transmission line resonators is feasible with current circuit QED technology. This proposal is universal and can be applied to accomplish the same task in a wide range of physical systems, such as four microwave or optical cavities, which are coupled to a natural or artificial three-level atom.