论文标题
使用量子传感器的数字噪声光谱法
Digital noise spectroscopy with a quantum sensor
论文作者
论文摘要
我们在数字控制调制下介绍并实验证明了一种量子传感协议,以使用单量传感器进行噪声过程的自动相关。这种WALSH噪声光谱法利用了自旋脉冲的简单序列,以生成数字过滤器的完整基础,该序列可以直接采样序列域中目标噪声的功率谱 - 可以使用线性变换来调整频率域中的自动相关函数,以及频域中的自动率函数。我们的方法也可以看作是基于框架的噪声光谱的实现,它通过引入与算术和逻辑时域相关的转换来解决与数字过滤器进行连续函数的基本困难。与基于标准的,基于频率的动力学噪声光谱方案协议相比,我们方法的准确性仅受时空的采样和离散化的限制,即使在有限的进化时间下,由于变质和硬件限制,也可以轻松改善。最后,我们通过实验重建了由核旋转浴在钻石中单个氮 - 胶合中心的电子自旋上产生的有效磁场的自动相关函数,讨论该方法的实际限制,以及进一步提高重建精度的途径。
We introduce and experimentally demonstrate a quantum sensing protocol to sample and reconstruct the auto-correlation of a noise process using a single-qubit sensor under digital control modulation. This Walsh noise spectroscopy method exploits simple sequences of spin-flip pulses to generate a complete basis of digital filters that directly sample the power spectrum of the target noise in the sequency domain -- from which the auto-correlation function in the time domain, as well as the power spectrum in the frequency domain, can be reconstructed using linear transformations. Our method, which can also be seen as an implementation of frame-based noise spectroscopy, solves the fundamental difficulty in sampling continuous functions with digital filters by introducing a transformation that relates the arithmetic and logical time domains. In comparison to standard, frequency-based dynamical-decoupling noise spectroscopy protocols, the accuracy of our method is only limited by the sampling and discretization in the time space and can be easily improved, even under limited evolution time due to decoherence and hardware limitations. Finally, we experimentally reconstruct the auto-correlation function of the effective magnetic field produced by the nuclear-spin bath on the electronic spin of a single nitrogen-vacancy center in diamond, discuss practical limitations of the method, and avenues for further improving the reconstruction accuracy.