提出利用一个三粒子部分纠缠GHZ态作为量子信道,实现三粒子GHZ态从发送者传送给两个接收者中任意一个的概率隐形传态方案.若发送者进行一次B e ll测量和两次H adam ard门操作后,想得到所需传送的三粒子GHZ态的接收者端引进两个辅助粒子...提出利用一个三粒子部分纠缠GHZ态作为量子信道,实现三粒子GHZ态从发送者传送给两个接收者中任意一个的概率隐形传态方案.若发送者进行一次B e ll测量和两次H adam ard门操作后,想得到所需传送的三粒子GHZ态的接收者端引进两个辅助粒子,进行两次控制-非操作,同时根据另一个接收者对手中粒子进行H adam ard门操作后的测量结果实施一个适当的幺正变换,可以一定的概率成功地隐形传送三粒子GHZ态.此方案可推广至隐形传送k粒子GHZ态,这时也只要用一个三粒子GHZ态作为量子信道,但想得到所需传送的k粒子GHZ态的接收者端需引进(k-1)个辅助粒子,进行(k-1)次控制-非操作.展开更多
Logic qubit plays an important role in current quantum communication. In this paper, we propose an efficient entanglement concentration protocol (ECP) for a new kind of logic Bell state, where the logic qubit is the c...Logic qubit plays an important role in current quantum communication. In this paper, we propose an efficient entanglement concentration protocol (ECP) for a new kind of logic Bell state, where the logic qubit is the concatenated Greenber- Horne- Zeilinger (C-GHZ) state. Our ECP relies on the nondemolition polarization parity check (PPC) gates constructed with cross-Kerr nonlinearity, and can distill one pair of maximally entangled logic Bell state from two same pairs of less-entangled logic Bell states. Benefit from the nondemolition PPC gates, the concentrated maximally entangled logic Bell st ate can be remained for further application. Moreover, our ECP can be rcpea ted to further concentrate the less-entangled logic Bell state. By repeating the ECP. the total success probability can be effectively increased. Based on above features, this ECP may be useful in future long-distance quantum communication.展开更多
文摘提出利用一个三粒子部分纠缠GHZ态作为量子信道,实现三粒子GHZ态从发送者传送给两个接收者中任意一个的概率隐形传态方案.若发送者进行一次B e ll测量和两次H adam ard门操作后,想得到所需传送的三粒子GHZ态的接收者端引进两个辅助粒子,进行两次控制-非操作,同时根据另一个接收者对手中粒子进行H adam ard门操作后的测量结果实施一个适当的幺正变换,可以一定的概率成功地隐形传送三粒子GHZ态.此方案可推广至隐形传送k粒子GHZ态,这时也只要用一个三粒子GHZ态作为量子信道,但想得到所需传送的k粒子GHZ态的接收者端需引进(k-1)个辅助粒子,进行(k-1)次控制-非操作.
基金the National Natural Science Foundation of China under Grant Nos. 11474168 and 11747161.
文摘Logic qubit plays an important role in current quantum communication. In this paper, we propose an efficient entanglement concentration protocol (ECP) for a new kind of logic Bell state, where the logic qubit is the concatenated Greenber- Horne- Zeilinger (C-GHZ) state. Our ECP relies on the nondemolition polarization parity check (PPC) gates constructed with cross-Kerr nonlinearity, and can distill one pair of maximally entangled logic Bell state from two same pairs of less-entangled logic Bell states. Benefit from the nondemolition PPC gates, the concentrated maximally entangled logic Bell st ate can be remained for further application. Moreover, our ECP can be rcpea ted to further concentrate the less-entangled logic Bell state. By repeating the ECP. the total success probability can be effectively increased. Based on above features, this ECP may be useful in future long-distance quantum communication.