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首页> 外文期刊>Journal of physical chemistry letters >Ultrafast Orbital Depolarization and Defect-Localized Phonon Dynamics Induced by Quantum Resonance between Multi-Nitrogen Vacancy Defects
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Ultrafast Orbital Depolarization and Defect-Localized Phonon Dynamics Induced by Quantum Resonance between Multi-Nitrogen Vacancy Defects

机译:多氮空位缺损之间量子共振诱导的超快轨道去极化和缺陷局部声音动力学

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摘要

Proximate nitrogen-vacancy (NV) defects with interdefect interaction may establish a new kind of quantum qubit network to explore controlled multibody quantum dynamics. In particular, by introducing the critical distance and favorable orientation between a pair of NV defects, the quantum resonance (QR) can be induced. Here, we present the first real-time depolarization and phonon dynamics on the excited state at ambient temperature which are intrinsic to the proximate multi-NV defects. We computationally demonstrate that the QR can effectively change the major properties of the multi-NV defects, such as orbital degeneracy, orbital delocalization, local phonon modes, electron-phonon coupling, and orbital depolarization dynamics, elucidating the physical mechanisms and finding the key factors to control them. The physical insights provide a starting point for the positioning accuracy of NV defects and creation protocols with broad implications for magnetometry, quantum information, nanophotonics, sensing, and spectroscopy, allowing the QR to be a new means of physical manipulation.
机译:近氮空位(NV)具有交织机相互作用的缺陷可以建立一种新的量子量子位网络来探索控制的多体量子动态。特别地,通过引入一对NV缺陷之间的临界距离和有利的取向,可以诱导量子谐振(QR)。在这里,我们在环境温度下介绍了激发态的第一个实时去极化和声子动力学,其是近似的多NV缺陷的内在温度。我们计算地证明QR可以有效地改变多NNV缺陷的主要性质,例如轨道退化,轨道删除,局部声子模式,电子 - 声子耦合和轨道去极化动力学,阐明了物理机制并找到关键因素控制它们。物理见解提供了对NV缺陷和创建协议的定位精度的起点,具有广泛影响磁力学,量子信息,纳米剧学,传感和光谱意义,使QR成为一种新的物理操纵手段。

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