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首页> 外文期刊>International journal of nanoscience >Neutral Silicon-Vacancy Color Center in Diamond: Cluster Simulation of Spatial and Hyperfine Characteristics
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Neutral Silicon-Vacancy Color Center in Diamond: Cluster Simulation of Spatial and Hyperfine Characteristics

机译:钻石中性硅空位色中心:空间和高浓度特征的簇仿真

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摘要

One of the most promising platforms to implement quantum technologies are coupled electron-nuclear spins in solids in which electrons can play a role of “fast” qubits, while nuclear spins can store quantum information for a very long time due to their exceptionally high isolation from the environment. The well-known representative of such systems is the “nitrogen-vacancy” (NV) center in diamond coupled by a hyperfine interaction to its intrinsic 14N/15N nuclear spin or to 13C nuclear spins presenting in the diamond lattice. More recently, other paramagnetic color centers in diamond have been identified exhibiting even better characteristics in comparison to the NV center. Essential prerequisite for a high-fidelity spin manipulation in these systems with tailored control pulse sequences is a complete knowledge of hyperfine interactions. Development of this understanding for one of the new color centers in diamond, viz., neutral “silicon-vacancy” (SiV0) color center, is a primary goal of this paper, in which we are presenting preliminary results of computer simulation of spatial and hyperfine characteristics of SiV0 center in H-terminated clusters C84[SiV0]H78 and C128[SiV0]H98.
机译:实现量子技术最有希望的平台之一是耦合电子核旋转的固体中,其中电子可以发挥“快速”QUBITS的作用,而核旋转可以由于它们的极高隔离而存储量子信息很长时间环境。众所周知的这种系统的代表性是通过对其固有的14N / 15n核旋转或呈现在金刚石晶格中的核旋转或13C核旋转的金刚石中的“氮空位”(NV)中心。最近,与NV中心相比,已经确定了钻石中的其他顺磁性颜色中心。具有定制控制脉冲序列的这些系统中的高保真自旋操作的基本先决条件是一种完全了解高血清相互作用。在钻石,QIZ中的一个新的颜色中心的理解的发展是本文的主要目标,其中我们正在提出空间和电脑仿真的初步结果H封端簇C84 H78和C128中SiV0中心的高血清特征C128 [SIV0] H98。

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