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NV-based quantum memories coupled to photonic integrated circuits

机译:基于NV的量子存储器耦合到光子集成电路

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The negatively charged nitrogen vacancy (NV) center in diamond is a promising solid-state quantum memory. However, developing networks comprising such quantum memories is limited by the fabrication yield of the quantum nodes and the collection efficiency of indistinguishable photons. In this letter, we report on advances on a hybrid quantum system that allows for scalable production of networks, even with low-yield node fabrication. Moreover, an NV center in a simple single mode diamond waveguide is shown in simulation and experiment to couple well to a single mode SiN waveguide with a simple adiabatic taper for optimal mode transfer. In addition, cavity enhancement of the zero phonon line of the NV center with a resonance coupled to the waveguide mode allows a simulated >1800 fold increase in the collection of photon states coherent with the state of the NV center into a single frequency and spatial mode.
机译:金刚石中带负电荷的氮空位(NV)中心是一种有前途的固态量子存储器。然而,包括这样的量子存储器的开发网络受到量子节点的制造成品率和不可区分的光子的收集效率的限制。在这封信中,我们报告了混合量子系统的进展,该系统即使在制造低产量节点的情况下也可以实现可扩展的网络生产。此外,在模拟和实验中显示了一个简单的单模金刚石波导中的NV中心,可以很好地耦合到具有简单绝热锥度的单模SiN波导,以实现最佳的模转移。此外,NV中心零声子线的腔增强以及耦合到波导模式的谐振使得与NV中心的状态相一致的光子态集合的模拟增加> 1800倍,进入单频和空间模式。

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