量信息系统是易碎的被外部环境扰乱。量切换建筑学是为把输入量数据转移到它用代替充分连接的量网络的目的地端口的有希望的计划之一。自从目前,在 qubits 之间的相互作用被限制到附近的 qubits 的一个小数字,一条新奇途径被扩大,并且改进建筑学是进一步的在有限非局部的操作下面示威了。有改进控制模块的整个建筑学能完成的表演评估表演 O (n~2 ) 的时间复杂性并且将为物理实现更可行。
Quantum information system is fragile to be disturbed by the external environment. Quantum switching architecture is one of the promising schemes for transferring input quantum data to its destination port substituted for fully connected quantum networks. Since at present, interactions between the qubits are limited to a small number of neighboring qubits, one novel approach was extended, and the improved architecture was further demonstrated under limited nonlocal operation. The performance evaluation shows that the whole architecture with improved control module can achieve a time complexity of O(n^2) and will be more feasible for physical realization.