论文标题
马尔可夫噪声下的控制增强量子计量
Control-enhanced quantum metrology under Markovian noise
论文作者
论文摘要
量子计量学可以通过利用合适的量子资源来显着提高参数估计的精度。但是,预测的精度可能会因现实的噪音而严重扭曲。在这里,我们提出了一种控制增强的量子计量计划,以防止这些噪音改善计量性能。我们的方案可以自动通过可调节控件更改参数编码动力学,从而导致最佳结果状态对所考虑的噪声不太敏感。作为演示,我们将其应用于几个典型的马尔可夫噪声通道下的频率估计问题。通过将我们的控制增强方案与标准方案和Ancilla辅助方案进行比较,我们表明我们的方案的性能更好,并且可以将估计精度提高到一个数量级左右。此外,我们在核磁共振系统中进行了原则实验,以验证拟议方案的有效性。这里的研究对当前的量子平台有助于利用在逼真的噪声环境中利用量子计量的力量。
Quantum metrology is supposed to significantly improve the precision of parameter estimation by utilizing suitable quantum resources. However, the predicted precision can be severely distorted by realistic noises. Here, we propose a control-enhanced quantum metrology scheme to defend against these noises for improving the metrology performance. Our scheme can automatically alter the parameter encoding dynamics with adjustable controls, thus leading to optimal resultant states that are less sensitive to the noises under consideration. As a demonstration, we numerically apply it to the problem of frequency estimation under several typical Markovian noise channels. Through comparing our control-enhanced scheme with the standard scheme and the ancilla-assisted scheme, we show that our scheme performs better and can improve the estimation precision up to around one order of magnitude. Furthermore, we conduct a proof-of-principle experiment in nuclear magnetic resonance system to verify the effectiveness of the proposed scheme. The research here is helpful for current quantum platforms to harness the power of quantum metrology in realistic noise environments.