论文标题
钻石中NV中心的强大全光读数
Robust All-Optical Single-Shot Readout of NV Centers in Diamond
论文作者
论文摘要
在单个实验重复中对Qubit状态的高保真投影读数是各种传感和计算量子协议的先决条件。对于固态Qubit来说,实现单发读数是具有挑战性的。对于钻石中的氮呈(NV)中心,它是在低温温度下使用核记忆或共振激发实现的。所有这些现有方法都有严格的实验要求。特别是,它们需要高效率的光子收集效率,例如浸入光学元件或全钻石微观镜。对于某些最相关的应用,例如在低温环境中的浅植入NV中心,这些工具不可用。在这里,我们演示了一种全光旋转读数方案,即使光子收集很差(提供小于10 $^3 $ clicks/秒),该方案即使光子收集很差,也可以实现单一的保真度。该方案基于在低温温度下与自旋依赖性的共振激发以及自旋到电荷转换相结合,将脆弱的电子自旋状态映射到稳定的电荷状态。我们证明这种技术可以在浅植入的NV中心上工作,因为它们是传感和可扩展NV的量子寄存器所需的。
High-fidelity projective readout of a qubit's state in a single experimental repetition is a prerequisite for various quantum protocols of sensing and computing. Achieving single-shot readout is challenging for solid-state qubits. For Nitrogen-Vacancy (NV) centers in diamond, it has been realized using nuclear memories or resonant excitation at cryogenic temperature. All of these existing approaches have stringent experimental demands. In particular, they require a high efficiency of photon collection, such as immersion optics or all-diamond micro-optics. For some of the most relevant applications, such as shallow implanted NV centers in a cryogenic environment, these tools are unavailable. Here we demonstrate an all-optical spin readout scheme that achieves single-shot fidelity even if photon collection is poor (delivering less than 10$^3$ clicks/second). The scheme is based on spin-dependent resonant excitation at cryogenic temperature combined with spin-to-charge conversion, mapping the fragile electron spin states to the stable charge states. We prove this technique to work on shallow implanted NV centers as they are required for sensing and scalable NV-based quantum registers.