论文标题
使用混合纠缠的分层量子网络
Hierarchical Quantum Network using Hybrid Entanglement
论文作者
论文摘要
一种新型的纠缠状态的出现,称为混合纠缠状态,即不同自由度之间的纠缠,使得可以使用较少资源执行各种量子计算和通信任务。在这里,我们旨在利用这些纠缠状态在通信中比量子网络的优势。不幸的是,由于其与周围环境的不可避免的互动,网络上共享的纠缠会恶化。因此,提出了纠缠浓度方案,以从相应的非最大值纠缠状态获得最大纠缠的混合欧米茄型状态。提出的纠缠浓度协议的优点是,使用线性光学组件和当前技术实施此协议是可行的。为实验实现提供了相应的线性光学量子电路,而浓度方案的成功概率也被报道。此后,我们通过使用欧米茄型状态进行信息分割,提出了在层次量子传送网络中最大纠缠的混合状态的应用,这也是迄今为止混合域中的第一个分层量子通信方案。目前的混合纠缠状态具有通过单量子位的极化旋转来规避Pauli操作的优势,这可以用较小的误差执行。
The advent of a new kind of entangled state known as hybrid entangled state, i.e., entanglement between different degrees of freedom, makes it possible to perform various quantum computational and communication tasks with lesser amount of resources. Here, we aim to exploit the advantage of these entangled states in communication over quantum networks. Unfortunately, the entanglement shared over the network deteriorates due to its unavoidable interaction with surroundings. Thus, an entanglement concentration protocol is proposed to obtain a maximally entangled hybrid Omega-type state from the corresponding non-maximally entangled states. The advantage of the proposed entanglement concentration protocol is that it is feasible to implement this protocol with linear optical components and present technology. The corresponding linear optical quantum circuit is provided for experimental realizations, while the success probability of the concentration protocol is also reported. Thereafter, we propose an application of maximally entangled hybrid state in the hierarchical quantum teleportation network by performing information splitting using Omega-type state, which is also the first hierarchical quantum communication scheme in the hybrid domain so far. The present hybrid entangled state has advantage in circumventing Pauli operations on the coherent state by polarization rotation of single qubit, which can be performed with lesser errors.