单自旋量子比特的操作:最新进展与展望

Zhizhuo Zhang, Jushang Ran, Fei Gao, Chuancheng Jia, Xuefeng Guo
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摘要

作为量子信息科学(QIS)的一项基础技术,量子自旋的操纵和检测可以实现精确控制,为重大进展开辟了新的途径。早期的研究主要集中在宏观系综量子系统,其中电子自旋共振被用来相干地处理不同系综中的电子自旋。然而,该系统初始化效率低,读出灵敏度低,阻碍了其进一步发展。要释放量子技术的全部潜力,实现单自旋精度至关重要。各种量子系统,包括色心、量子点、原子和分子,已经证明了单自旋操纵的能力。通过多种技术成功控制这些系统中的自旋量子态,为量子信息系统的新思想和无限可能性铺平了道路。本文综述了近年来该领域的重大进展,并探讨了未来的发展方向,旨在阐明QIS的持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Operation of Single-Spin Qubits: Recent Advances and Prospects

Operation of Single-Spin Qubits: Recent Advances and Prospects

As a foundational technology in quantum information science (QIS), the manipulation and detection of quantum spins enable precise control, opening new avenues for significant advancements. Early research focused on macroscopic ensemble quantum systems, where electron spin resonance is used to coherently address electron spins within different ensembles. However, the low initialization efficiency and readout sensitivity of such systems hinder their further development. Unlocking the full potential of quantum technology, it is essential to achieve single-spin precision. Various quantum systems, including color centers, quantum dots, atoms, and molecules, have been demonstrated the capability for single-spin manipulation. The successful control of spin quantum states in these systems through diverse techniques has paved the way for new ideas and boundless possibilities in QIS. This review provides a comprehensive overview of recent significant advances in the field and explores future development directions, aiming to shed light on the ongoing evolution of QIS.

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