论文标题

高温退火产生的光学稳定,连贯的颜色中心的微观研究

Microscopic study of optically-stable, coherent color centers in diamond generated by high-temperature annealing

论文作者

Wong, King Cho, Ng, San Lam, Ho, Kin On, Shen, Yang, Wu, Jiahao, Lai, Kwing To, Leung, Man Yin, Leung, Wai Kuen, Dasari, Durga Bhaktavatsala Rao, Denisenko, Andrej, Wrachtrup, Jörg, Yang, Sen

论文摘要

固体中的单色中心已成为量子信息科学的有前途的物理平台。用出色的量子特性创建这些中心是进一步技术发展的关键基础。特别是,对自旋浴环境的微观理解是工程颜色中心进行量子控制的关键。在这项工作中,我们提出并展示了一种独特的高温退火(HTA)方法,用于在无植入的钻石中创建高质量的氮空位(NV)中心。同时,使用创建的NV中心作为其本地环境的探针,我们验证了HTA不会诱导任何损害。几乎所有在超低硝基浓缩膜中创建的单一NV中心都具有稳定和傅立叶转换有限的光谱。此外,HTA强烈降低了自然在集合样品中生长的噪声源,并导致脱碳时间和灵敏度的三倍以上。我们还验证了空位激活和缺陷改革,尤其是H3和P1中心,可以解释自旋浴和颜色中心之间的重新配置。这种新颖的方法将成为基于空缺的量子技术的强大工具。

Single color centers in solid have emerged as promising physical platforms for quantum information science. Creating these centers with excellent quantum properties is a key foundation for further technological developments. In particular, the microscopic understanding of the spin bath environments is the key to engineer color centers for quantum control. In this work, we propose and demonstrate a distinct high-temperature annealing (HTA) approach for creating high-quality nitrogen vacancy (NV) centers in implantation-free diamonds. Simultaneously using the created NV centers as probes for their local environment we verify that no damage was microscopically induced by the HTA. Nearly all single NV centers created in ultra-low-nitrogen-concentration membranes possess stable and Fourier-transform-limited optical spectra. Furthermore, HTA strongly reduces noise sources naturally grown in ensemble samples, and leads to more than three-fold improvements of decoherence time and sensitivity. We also verify that the vacancy activation and defect reformation, especially H3 and P1 centers, can explain the reconfiguration between spin baths and color centers. This novel approach will become a powerful tool in vacancy-based quantum technology.

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