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μ子与I>1/2核自旋之间的纠缠作为电荷环境的探针。

Entanglement between Muon and I>1/2 Nuclear Spins as a Probe of Charge Environment.

作者信息

Bonfà Pietro, Frassineti Jonathan, Wilkinson John M, Prando Giacomo, Isah Muhammad Maikudi, Wang Chennan, Spina Tiziana, Joseph Boby, Mitrović Vesna F, De Renzi Roberto, Blundell Stephen J, Sanna Samuele

机构信息

Department of Mathematical, Physical and Computer Sciences, University of Parma, Parco Area delle Scienze 7/A, 43124 Parma, Italy.

Department of Physics and Astronomy "A. Righi", University of Bologna and INFN Sezione di Bologna, via Berti Pichat 6/2, 40127 Bologna, Italy.

出版信息

Phys Rev Lett. 2022 Aug 26;129(9):097205. doi: 10.1103/PhysRevLett.129.097205.

Abstract

We report on the first example of quantum coherence between the spins of muons and quadrupolar nuclei. We reveal that these entangled states are highly sensitive to a local charge environment and thus, can be deployed as a functional quantum sensor of that environment. The quantum coherence effect was observed in vanadium intermetallic compounds which adopt the A15 crystal structure, and whose members include all technologically pertinent superconductors. Furthermore, the extreme sensitivity of the entangled states to the local structural and electronic environments emerges through the quadrupolar interaction with the electric field gradient due to the charge distribution at the nuclear (I>1/2) sites. This case study demonstrates that positive muons can be used as a quantum sensing tool to also probe structural and charge-related phenomena in materials, even in the absence of magnetic degrees of freedom.

摘要

我们报道了首例μ子自旋与四极核之间的量子相干实例。我们发现,这些纠缠态对局部电荷环境高度敏感,因此可作为该环境的功能性量子传感器。在采用A15晶体结构的钒基金属间化合物中观察到了量子相干效应,该结构的成员包括所有具有技术相关性的超导体。此外,由于核(I>1/2)位点的电荷分布,通过与电场梯度的四极相互作用,纠缠态对局部结构和电子环境表现出极高的敏感性。该案例研究表明,即使在没有磁自由度的情况下,正μ子也可作为量子传感工具来探测材料中的结构和电荷相关现象。

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