Liu Tong, Xiong Shao-Jie, Cao Xiao-Zhi, Su Qi-Ping, Yang Chui-Ping
Opt Lett. 2015 Dec 1;40(23):5602-5. doi: 10.1364/OL.40.005602.
Compared with a qubit, a qutrit (i.e., three-level quantum system) has a larger Hilbert space and thus can be used to encode more information in quantum information processing and communication. Here, we propose a method to transfer an arbitrary quantum state between two flux qutrits coupled to two resonators. This scheme is simple because it only requires two basic operations. The state-transfer operation can be performed fast because only resonant interactions are used. Numerical simulations show that the high-fidelity transfer of quantum states between the two qutrits is feasible with current circuit-QED technology. This scheme is quite general and can be applied to accomplish the same task for other solid-state qutrits coupled to resonators.
与量子比特相比,三量子比特(即三能级量子系统)具有更大的希尔伯特空间,因此在量子信息处理和通信中可用于编码更多信息。在此,我们提出一种在与两个谐振器耦合的两个磁通三量子比特之间转移任意量子态的方法。该方案很简单,因为它只需要两个基本操作。态转移操作可以快速执行,因为只使用了共振相互作用。数值模拟表明,利用当前的电路量子电动力学技术,在两个三量子比特之间进行高保真量子态转移是可行的。该方案非常通用,可应用于为其他与谐振器耦合的固态三量子比特完成相同任务。