论文标题

在光学晶格中创建和验证可扩展纠缠的方案

A scheme to create and verify scalable entanglement in optical lattice

论文作者

Zhou, You, Xiao, Bo, Li, Meng-Da, Zhao, Qi, Yuan, Zhen-Sheng, Ma, Xiongfeng, Pan, Jian-Wei

论文摘要

为了实现可扩展的量子信息处理,已经致力于在各种物理系统中创建大规模纠缠状态。由于其可行的初始化和平行操作,光学晶格中的Ultracold Atom被认为是有前途的平台之一。在这项工作中,我们提出了一个有效的方案,以生成和表征光学晶格中的全球纠缠。只有两层量子电路,这一代基于双井中的超声交流的相互作用,利用了两倍的纠缠大门。这些操作的并行性使这一生成能够快速且可扩展。为了验证这种非稳定器状态的纠缠,我们主要设计了三种互补检测方案,与完整的层析成像相比,资源耗费较少。特别是,一个人只需要两个同质的局部测量设置即可识别纠缠特性。我们的纠缠生成和验证协议为光学晶格中进一步的量子信息处理奠定了基础。

To achieve scalable quantum information processing, great efforts have been devoted to the creation of large-scale entangled states in various physical systems. Ultracold atom in optical lattice is considered as one of the promising platforms due to its feasible initialization and parallel manipulation. In this work, we propose an efficient scheme to generate and characterize global entanglement in the optical lattice. With only two-layer quantum circuits, the generation utilizes two-qubit entangling gates based on the superexchange interaction in double wells. The parallelism of these operations enables the generation to be fast and scalable. To verify the entanglement of this non-stabilizer state, we mainly design three complementary detection protocols which are less resource-consuming compared to the full tomography. In particular, one just needs two homogenous local measurement settings to identify the entanglement property. Our entanglement generation and verification protocols provide the foundation for the further quantum information processing in optical lattice.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源