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Photoelectric Detection and Quantum Readout of Nitrogen-Vacancy Center Spin States in Diamond

机译:钻石中氮空缺中心旋转状态的光电检测和量子读数

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摘要

A novel method for reading out the electron spin state of the negatively charged nitrogen-vacancy (NV) point defect in diamond, based on photoelectric detection of NV magnetic resonances (PDMR), is reviewed. As a convenient way to measure the spin state of qubits, the presented technique is anticipated to lead to a vast range of applications in the field of quantum technologies. It has been demonstrated that this method can be used both in continuous-wave mode and for the pulse readout of coherently manipulated NV- spins. The PDMR technique presents interesting advantages over the commonly used optical detection of magnetic resonances (ODMR) and was recently downscaled to the reading out of a single NV- spin qubit. The principles, current developments, advantages, and drawbacks of PDMR are presented in this progress report. A complete to-date methodology of NV photoelectric readout is described and PDMR is compared to ODMR. Future developments and possible improvements of the technique are mentioned. The results of the latest studies, aiming at overcoming limitations in the PDMR contrast through a better understanding of NV photo-physics and of charge exchanges between NV centers and other electrically active defects, are discussed.
机译:综述了一种基于NV磁共振(PDMR)的光电检测读出金刚石中带负电荷氮空位(NV)点缺陷的电子旋转状态的新方法。作为测量Qubits的自旋状态的便捷方式,预计将导致量子技术领域的广泛应用。已经证明,该方法可以在连续波模式下使用,并且用于连贯操纵的NV-旋转的脉冲读数。 PDMR技术对磁共振(ODMR)的常用光学检测具有有趣的优势,并且最近将从单个NV-旋转量子位缩小到读取。 PDMR的原则,当前发展,优势和缺点在此进度报告中介绍。描述了NV光电读数的完整迄今为止的方法,并将PDMR与ODMR进行比较。提到了未来的发展和可能的技术改进。讨论了最新研究的结果,旨在通过更好地理解NV照片物理和NV中心与其他电活性缺陷之间的电荷交换来克服PDMR对比的局限性。

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