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氮掺杂金刚石中低于25K的非常规磁化现象为超导性和超顺磁性的存在提供了线索。

Unconventional Magnetization below 25 K in Nitrogen-doped Diamond provides hints for the existence of Superconductivity and Superparamagnetism.

作者信息

Barzola-Quiquia J, Stiller M, Esquinazi P D, Molle A, Wunderlich R, Pezzagna S, Meijer J, Kossack W, Buga S

机构信息

Division of Superconductivity and Magnetism, Felix Bloch Institute for Solid State Physics, University of Leipzig, 04103, Leipzig, Germany.

Locally-Sensitive & Time-Resolved Spectroscopy (EM-ALTS); and Institute for Chemistry and Biochemistry, Helmholtz-Zentrum Berlin f. Materialien und Energie GmbH; and Freie Universität Berlin, Hahn-Meitner-Platz 1, 14109, Berlin-Wannsee, Germany.

出版信息

Sci Rep. 2019 Jun 19;9(1):8743. doi: 10.1038/s41598-019-45004-6.

Abstract

The magnetization of nitrogen-doped single crystalline diamond bulk samples shows unconventional field and temperature hysteresis loops at T [Formula: see text] 25 K. The results suggest the existence of superparamagnetic and superconducting regions in samples with nitrogen concentration <200 ppm. Both phases vanish at temperatures above 25 K where the samples show diamagnetic behavior similar to undoped diamond. The observation of superparamagnetism and superconductivity is attributed to the nitrogen doping and to the existence of defective regions. From particle-induced X-ray emission with ppm resolution we rule out that the main observations below 25 K are due to magnetic impurities. We investigated also the magnetic properties of ferromagnetic/high-temperature superconducting oxide bilayers. The magnetization results obtained from those bilayers show remarkable similarities to the ones in nitrogen-doped diamond.

摘要

氮掺杂单晶金刚石块状样品的磁化强度在T [公式:见正文] 25 K时呈现出非常规的场和温度磁滞回线。结果表明,在氮浓度<200 ppm的样品中存在超顺磁性和超导区域。这两个相在高于25 K的温度下消失,此时样品表现出与未掺杂金刚石类似的抗磁性行为。超顺磁性和超导性的观测归因于氮掺杂和缺陷区域的存在。通过具有ppm分辨率的粒子诱导X射线发射,我们排除了25 K以下的主要观测结果是由磁性杂质引起的可能性。我们还研究了铁磁/高温超导氧化物双层的磁性。从这些双层获得的磁化结果与氮掺杂金刚石中的结果显示出显著的相似性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd77/6584729/e6edde5b18d9/41598_2019_45004_Fig1_HTML.jpg

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