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Scalable architecture for quantum information processing with atoms in optical micro-structures

机译:用于光学微结构中原子的量子信息处理的可扩展体系结构

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摘要

We review recent experimental progress towards quantum information processing and quantum simulation using neutral atoms in two-dimensional (2D) arrays of optical microtraps as 2D registers of qubits. We describe a scalable quantum information architecture based on micro-fabricated optical elements, simultaneously targeting the important issues of single-site addressability and scalability. This approach provides flexible and integrable configurations for quantum state storage, manipulation, and retrieval. We present recent experimental results on the initialization and coherent one-qubit rotation of up to 100 individually addressable qubits, the coherent transport of atomic quantum states in a scalable quantum shift register, and discuss the feasibility of two-qubit gates in 2D microtrap arrays.
机译:我们回顾了在量子信息处理和量子模拟方面的最新实验进展,该研究使用了光学微陷阱的二维(2D)阵列中的中性原子作为qubit的2D寄存器。我们描述了一种基于微制造光学元件的可扩展量子信息体系结构,同时针对单站点可寻址性和可扩展性的重要问题。这种方法为量子状态存储,操作和检索提供了灵活而可集成的配置。我们目前提供有关多达100个可单独寻址的量子位的初始化和相干单量子位旋转,可伸缩量子移位寄存器中原子量子态的相干传输的最新实验结果,并讨论了二维微阱阵列中两量子位门的可行性。

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