Effects of bubble-induced strain on the magnetic properties of van der Waals ferromagnet CrBr3

Sergey Grebenchuk, Magdalena Grzeszczyk, Zhaolong Chen, Kostya S Novoselov and Maciej Koperski
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Abstract

Two-dimensional materials provide with ability to control their properties with a number of methods. One of such methods is using strain and compression. In this work, we investigated the influence of locally induced strain through bubbles in thin ferromagnetic CrBr3 using low-temperature magnetic force microscopy. As a result, domain pinning and higher coercive and saturation fields were observed in the bubble. In addition, nontrivial spin arrangements are allowed to take place in a non-homogeneously strained area, leading to different responses to the external magnetic field in comparison to a non-strained region. Finally, Raman spectroscopy and magneto-photoluminescence spectroscopy were performed to show alternation of the magnetic properties of the sample under mechanical deformation.
气泡诱导应变对范德华铁磁体 CrBr3 磁性能的影响
二维材料可以通过多种方法控制其特性。其中一种方法是利用应变和压缩。在这项工作中,我们利用低温磁力显微镜研究了通过薄铁磁性 CrBr3 中的气泡局部诱导应变的影响。结果,在气泡中观察到了畴钉化以及更高的矫顽力场和饱和场。此外,在非均匀应变区域允许发生非三维自旋排列,从而导致对外部磁场的反应与非应变区域不同。最后,拉曼光谱和磁致发光光谱显示了样品在机械变形下的磁性交替。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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