论文标题

具有单个量子记忆的确定性钟形状态测量

Deterministic Bell state measurement with a single quantum memory

论文作者

Kamimaki, Akira, Wakamatsu, Keidai, Mikata, Kosuke, Sekiguchi, Yuhei, Kosaka, Hideo

论文摘要

任何量子信息系统都以纠缠作为资源运行,应通过称为“完整贝尔状态测量(BSM)”的联合测量确定生成。确定性是由乘坐读取的Ancilla的两个耦合量子A的量子非约束测量,这不可避免地需要额外的物理量子。在这里,我们在钻石中只有氮原子(NV)中的氮原子证明了确定性和完整的BSM作为量子记忆,而无需利用电子氮(14N)双Qutrits在零磁场的双QUTRIT,而无需依赖任何碳同位素。 Qutrits和氮旋转的Qutrits子空间内的退化逻辑Qubits通过零场分裂状态随意偏振微波炉和射频脉冲脉冲,作为ANCILLA作为Ancilla作为ANCILLA,可以通过零场分裂状态进行全体控制,从而确定了完整的BSM。由于该系统在无同位素和无现场环境下工作,因此演示为长途量子网络和大型分布式量子计算机的长途量子网络和量子接口提供了高收率,高保真度和高速量子中继器为道路铺平了道路。

Any quantum information system operates with entanglement as a resource, which should be deterministically generated by a joint measurement known as complete Bell state measurement (BSM). The determinism arises from a quantum nondemolition measurement of two coupled qubits with the help of readout ancilla, which inevitably requires extra physical qubits. We here demonstrate a deterministic and complete BSM with only a nitrogen atom in a nitrogen-vacancy (NV) center in diamond as a quantum memory without reliance on any carbon isotopes by exploiting electron nitrogen (14N) double qutrits at a zero magnetic field. The degenerate logical qubits within the subspace of qutrits on the electron and nitrogen spins are holonomically controlled by arbitrarily polarized microwave and radiofrequency pulses via zero field split states as the ancilla, enabling the complete BSM deterministically. Since the system works under an isotope free and field free environment, the demonstration paves the way for realizing high yield, high fidelity, and high speed quantum repeaters for long haul quantum networks and quantum interfaces for large scale distributed quantum computers.

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