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环形自旋链中与相关噪声相互作用的磁场传感。

Magnetic field sensing subject to correlated noise with a ring spin chain.

机构信息

School of Physics, Beijing Institute of Technology, Beijing 100081, China.

School of Physics, Qufu Normal University, Qufu 273165, China.

出版信息

Sci Rep. 2016 Sep 13;6:33254. doi: 10.1038/srep33254.

Abstract

In this paper, we focus on the magnetic field sensing subject to a correlated noise. We use a ring spin chain with only the nearest neighbor interactions as our probe to estimate both the intensity B and the direction θ of the magnetic field when the probe reaches its steady state. We numerically calculate the quantum Fisher information (QFI) to characterize the estimation precision. On the one hand, for estimating B, we find that the coupling between spins in the probe plays an important role in the precision, and the largest value of the QFI can be achieved when θ = π/2 together with an optimal coupling. Moreover, for any direction, the precision scaling can be better than the Heisenberg-limit (HL) with a proper coupling. On the other hand, for estimating θ, we find that our probe can perform a high precision detection for θ ~ π/2, with the QFI much larger than that for any other directions, especially when the coupling is tuned to the optimal value. And we find that the precision scaling for θ ~ π/2 can be better than the HL, but for other directions, the precision scaling is only limited to the standard quantum limit (SQL). Due to the computational complexity we restrict the number of spins in the probe to 60.

摘要

本文聚焦于关联噪声下的磁场传感问题。我们使用仅有最近邻相互作用的环形自旋链作为探针,在探针达到稳态时估计磁场的强度 B 和方向θ。我们通过数值计算量子 Fisher 信息(QFI)来刻画估计精度。一方面,对于 B 的估计,我们发现探针中自旋之间的耦合在精度中起着重要作用,当θ=π/2 且耦合为最优时,QFI 可达到最大值。此外,对于任意方向,在适当的耦合下,精度标度可以优于海森堡极限(HL)。另一方面,对于θ的估计,我们发现我们的探针可以对θπ/2 进行高精度检测,QFI 远大于其他任何方向的 QFI,特别是当耦合调至最优值时。我们发现,对于θπ/2 的精度标度可以优于 HL,但对于其他方向,精度标度仅受限于标准量子极限(SQL)。由于计算复杂度的限制,我们将探针中的自旋数限制为 60。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1836/5020690/ed84659cf4f6/srep33254-f1.jpg

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