论文标题
在钻石中有效多重核自旋检测的算法分解
Algorithmic decomposition for efficient multiple nuclear spin detection in diamond
论文作者
论文摘要
有效检测和表征固态宿主中的单个自旋是扩展量子传感和量子信息处理领域的重要步骤。虽然使用氮呈(NV)中心的电子自旋证明了对钻石中几个13C核自旋的选择性检测和控制,但需要一种可靠,有效且自动表征方法。在这里,我们开发了一种自动化算法方法,用于分解光谱数据,以识别和表征钻石中多个核自旋。我们证明了对于虚拟和实验核谱数据的有效核自旋鉴定和超精细相互作用成分的准确再现。我们对该方法进行系统分析,并讨论该方法可以有效检测到的每个核旋转的超细相互作用成分的范围。结果证明了一种系统的方法,该方法在借助计算方法的帮助下自动检测核自旋,从而促进了设备的未来可扩展性。
Efficiently detecting and characterizing individual spins in solid-state hosts is an essential step to expand the fields of quantum sensing and quantum information processing. While selective detection and control of a few 13C nuclear spins in diamond have been demonstrated using the electron spin of nitrogen-vacancy (NV) centers, a reliable, efficient, and automatic characterization method is desired. Here, we develop an automated algorithmic method for decomposing spectral data to identify and characterize multiple nuclear spins in diamond. We demonstrate efficient nuclear spin identification and accurate reproduction of hyperfine interaction components for both virtual and experimental nuclear spectroscopy data. We conduct a systematic analysis of this methodology and discuss the range of hyperfine interaction components of each nuclear spin that the method can efficiently detect. The result demonstrates a systematic approach that automatically detects nuclear spins with the aid of computational methods, facilitating the future scalability of devices.