Xue Zheng-Yuan, Gong Ming, Liu Jia, Hu Yong, Zhu Shi-Liang, Wang Z D
1] Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, and School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou 510006, China [2] Department of Physics and Center of Theoretical and Computational Physics, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Department of Physics and Center for Quantum Coherence, The Chinese University of Hong Kong, Shatin, N.T., Hong Kong, China.
Sci Rep. 2015 Jul 28;5:12233. doi: 10.1038/srep12233.
Hybrid architectures, consisting of conventional and topological qubits, have recently attracted much attention due to their capability in consolidating robustness of topological qubits and universality of conventional qubits. However, these two kinds of qubits are normally constructed in significantly different energy scales, and thus the energy mismatch is a major obstacle for their coupling, which can support the exchange of quantum information between them. Here we propose a microwave photonic quantum bus for a strong direct coupling between the topological and conventional qubits, where the energy mismatch is compensated by an external driving field. In the framework of tight-binding simulation and perturbation approach, we show that the energy splitting of Majorana fermions in a finite length nanowire, which we use to define topological qubits, is still robust against local perturbations due to the topology of the system. Therefore, the present scheme realizes a rather robust interface between the flying and topological qubits. Finally, we demonstrate that this quantum bus can also be used to generate multipartitie entangled states with the topological qubits.
由传统量子比特和拓扑量子比特组成的混合架构,因其在巩固拓扑量子比特的鲁棒性和传统量子比特的通用性方面的能力,近来备受关注。然而,这两种量子比特通常在显著不同的能量尺度下构建,因此能量失配是它们耦合的主要障碍,而这种耦合能支持它们之间的量子信息交换。在此,我们提出一种用于拓扑量子比特与传统量子比特之间强直接耦合的微波光子量子总线,其中能量失配由外部驱动场补偿。在紧束缚模拟和微扰方法的框架下,我们表明,我们用于定义拓扑量子比特的有限长度纳米线中马约拉纳费米子的能量分裂,由于系统的拓扑结构,对局部微扰仍然具有鲁棒性。因此,本方案实现了飞行量子比特与拓扑量子比特之间相当鲁棒的接口。最后,我们证明这种量子总线还可用于与拓扑量子比特生成多体纠缠态。