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极端条件下关联电子系统中磁场织构的测量。

Measuring magnetic field texture in correlated electron systems under extreme conditions.

机构信息

Department of Physics, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.

Department of Physics, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Science. 2019 Dec 13;366(6471):1355-1359. doi: 10.1126/science.aaw4278.

Abstract

Pressure is a clean, continuous, and systematic tuning parameter among the competing ground states in strongly correlated electron systems such as superconductivity and magnetism. However, owing to the restricted access to samples enclosed in high-pressure devices, compatible magnetic field sensors with sufficient sensitivity are rare. We used nitrogen vacancy centers in diamond as a spatially resolved vector field sensor for material research under pressure at cryogenic temperatures. Using a single crystal of BaFe(AsP) as a benchmark, we extracted the superconducting transition temperature, the local magnetic field profile in the Meissner state, and the critical fields. The method developed in this work offers a distinct tool for probing and understanding a range of quantum many-body systems.

摘要

压力是强关联电子系统(如超导和磁性)中竞争基态之间的一种清洁、连续且系统的调谐参数。然而,由于对高压设备中封装的样品的访问受限,具有足够灵敏度的兼容磁场传感器很少。我们使用金刚石中的氮空位中心作为低温下压力下材料研究的空间分辨矢量场传感器。使用 BaFe(AsP)单晶作为基准,我们提取了超导转变温度、迈斯纳态下的局部磁场分布以及临界场。这项工作中开发的方法为探测和理解一系列量子多体系统提供了一种独特的工具。

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