提出了一种在金刚石中两个临近氮-空位色心(nitrogen-vacancy color center,简称NV色心)之间施加受控非门(C-NOT gate)的新方案.在该方案中,临近NV色心间的强电偶极耦合将导致态依赖的能级移动,从而施加可控的激光共振激发可以实现快速...提出了一种在金刚石中两个临近氮-空位色心(nitrogen-vacancy color center,简称NV色心)之间施加受控非门(C-NOT gate)的新方案.在该方案中,临近NV色心间的强电偶极耦合将导致态依赖的能级移动,从而施加可控的激光共振激发可以实现快速受控相位门(C-phase gate),结合单比特操作,可以快速实现C-NOT门.在两个相邻10 nm的NV色心之间,C-NOT门操作时间最快可达120 ns,比传统磁偶极方式快了2个量级.为了降低激发态自发辐射的影响,提出利用非共振腔抑制自发辐射.模拟结果显示C-phase门操控保真度可以达到98.88%.最后,将该方案扩展到一维NV色心自旋链.展开更多
基金Supported by National Basic Research Program of China(2014 CB643903,2013 CB932904)National Natural Science Foundation of China(61435012,61274125,and 61274013)+1 种基金National Special funds for the Development of Major Research Equipment and Instruments,China(2012YQ140005)Strategic Priority Research Program(B)of Chinese Academy of Sciences(XDB01010200)
基金supported by the National Key R&D Program of China (2017YFA0304800)the National Natural Science Foundation of China (U20A20218, 61525504,61435011)+1 种基金Fundamental Research Funds for the Central Universitiesthe Youth Innovation Promotion Association of C AS(2018490)。
基金National Key Research and Development Program of China(Nos.2018YFA0306600,2017YFA0305000)National Natural Science Foundation of China(Item Numbers:11775209,81788101,11761131011)+2 种基金Anhui Quantum Information Technology Leading Project(Item Number:AHY050000)Fundamental Research Funds for the Central UniversitiesUSTC Research Funds of the Double First-Class Initiative.
文摘提出了一种在金刚石中两个临近氮-空位色心(nitrogen-vacancy color center,简称NV色心)之间施加受控非门(C-NOT gate)的新方案.在该方案中,临近NV色心间的强电偶极耦合将导致态依赖的能级移动,从而施加可控的激光共振激发可以实现快速受控相位门(C-phase gate),结合单比特操作,可以快速实现C-NOT门.在两个相邻10 nm的NV色心之间,C-NOT门操作时间最快可达120 ns,比传统磁偶极方式快了2个量级.为了降低激发态自发辐射的影响,提出利用非共振腔抑制自发辐射.模拟结果显示C-phase门操控保真度可以达到98.88%.最后,将该方案扩展到一维NV色心自旋链.