论文标题

钻石纳米结构中的光学连贯的氮态缺陷中心

Optically coherent nitrogen-vacancy defect centers in diamond nanostructures

论文作者

Orphal-Kobin, Laura, Unterguggenberger, Kilian, Pregnolato, Tommaso, Kemf, Natalia, Matalla, Matthias, Unger, Ralph-Stephan, Ostermay, Ina, Pieplow, Gregor, Schröder, Tim

论文摘要

光学活跃的固态自旋缺陷有可能成为量子信息处理应用程序的多功能资源。钻石中的氮呈缺陷中心(NV)作为量子记忆,可以通过纠缠方案中所示的相干光子连接。但是,尤其是在钻石纳米结构中,光谱扩散的作用会导致光学反应阻碍纠缠的产生。在这项工作中,我们提出了显着减少钻石纳米结构中电噪声的策略。我们展示了纳米圆柱中的单个NV,在一秒钟和长期的光谱稳定性上表现出寿命有限的线宽,在三分钟内低至150 MHz,不均匀线宽低至150 MHz。激发能力和能量依赖性测量与纳米蒙特卡洛模拟结合使用,有助于更好地理解大量和表面缺陷对NV光谱特性的影响。最后,我们为纳米结构耦合的NVS提出了一个纠缠协议,可提供多达数百kHz的纠缠产生率。

Optically active solid-state spin defects have the potential to become a versatile resource for quantum information processing applications. Nitrogen-vacancy defect centers (NV) in diamond act as quantum memories and can be interfaced by coherent photons as demonstrated in entanglement protocols. However, in particular in diamond nanostructures, the effect of spectral diffusion leads to optical decoherence hindering entanglement generation. In this work, we present strategies to significantly reduce the electric noise in diamond nanostructures. We demonstrate single NVs in nanopillars exhibiting lifetime-limited linewidth on the time scale of one second and long-term spectral stability with inhomogeneous linewidth as low as 150 MHz over three minutes. Excitation power and energy-dependent measurements in combination with nanoscopic Monte Carlo simulations contribute to a better understanding of the impact of bulk and surface defects on the NV's spectral properties. Finally, we propose an entanglement protocol for nanostructure-coupled NVs providing entanglement generation rates up to hundreds of kHz.

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