论文标题
钻石中的单电子自旋的高保真单拍读数,并带有旋转转换
High-fidelity single-shot readout of single electron spin in diamond with spin-to-charge conversion
论文作者
论文摘要
Qubits的高保真度单拍读数是容易耐故障量子计算和可扩展量子网络的关键组件。近年来,Diamond的氮气现象(NV)中心已成为上述应用的领先平台。 NV电子自旋的当前单发读数依赖于低温温度下的共振荧光方法。但是,自旋流过程中断了光学循环跃迁,因此限制了读数保真度。在这里,我们介绍了一种由近红外(NIR)光辅助的旋转式转换方法,以抑制自旋纹误差。该方法利用低温共振激发和光次离子灵活性的高自旋选择性。在存在高应变和快速自旋过程的情况下,我们为NV中心电子旋转的单发读数实现了总体保真度> $ 95%。通过进一步的改进,该技术有可能实现超过耐断层阈值的自旋读数保真度,并且还可能在集成的光电设备上找到应用。
High fidelity single-shot readout of qubits is a crucial component for fault-tolerant quantum computing and scalable quantum networks. In recent years, the nitrogen-vacancy (NV) center in diamond has risen as a leading platform for the above applications. The current single-shot readout of the NV electron spin relies on resonance fluorescence method at cryogenic temperature. However, the the spin-flip process interrupts the optical cycling transition, therefore, limits the readout fidelity. Here, we introduce a spin-to-charge conversion method assisted by near-infrared (NIR) light to suppress the spin-flip error. This method leverages high spin-selectivity of cryogenic resonance excitation and high flexibility of photonionization. We achieve an overall fidelity $>$ 95% for the single-shot readout of an NV center electron spin in the presence of high strain and fast spin-flip process. With further improvements, this technique has the potential to achieve spin readout fidelity exceeding the fault-tolerant threshold, and may also find applications on integrated optoelectronic devices.