论文标题

QUASI-TWO维范德华的磁各向异性的压力控制Ferromagnet Cr $ _2 $ ge $ _2 $ _2 $ te $ _6 $

Pressure control of the magnetic anisotropy of the quasi-two-dimensional van der Waals ferromagnet Cr$_2$Ge$_2$Te$_6$

论文作者

Sakurai, T., Rubrecht, B., Corredor, L. T., Takehara, R., Yasutani, M., Zeisner, J., Alfonsov, A., Selter, S., Aswartham, S., Wolter, A. U. B., Büchner, B., Ohta, H., Kataev, V.

论文摘要

我们报告了静态磁化和cr磁共振共振(FMR)Cr $ _2 $ _2 $ ge $ _2 $ _2 $ te $ _6 $的测量结果的结果,以解决此Quasi-Two-two-dimensional van der waals Magnet的属性。静水压力下的静态磁数据最高3.4 GPA揭示了临界过渡温度的降低,过渡宽度的宽扩大以及将磁化磁化强度充分饱和的磁场增加,逐渐抑制铁磁性。 $ m _ {\ rm s} \ simeq3μ_ {\ rm b} $/cr的值在误差栏中保持恒定,最高为2.8 GPa。 FMR信号的各向异性在研究的静水压力中连续降低至2.39 GPa,这表明易于轴型磁晶型偏型偏型偏移能量(MAE)。对FMR数据的定量分析提供了证据表明,在此压力下,MAE常数$ k _ {\ rm u} $,尽管变小,但仍然保持有限和正面,即易于轴类型。因此,最近讨论的可能性是在Cr $ _2 $ _2 $ ge $ _2 $ _2 $ _6 $中切换磁晶对迹象的可能性,只能预期在较高的压力下,如果可能的话,由于观察到的压力下的弱势趋势。这种情况可能与设计含有Cr $ _2 $ ge $ _2 $ _2 $ te $ _6 $的应变工程功能异质结构的设计有关。

We report the results of the pressure-dependent measurements of the static magnetization and of the ferromagnetic resonance (FMR) of Cr$_2$Ge$_2$Te$_6$ to address the properties of the ferromagnetic phase of this quasi-two-dimensional van der Waals magnet. The static magnetic data at hydrostatic pressures up to 3.4 GPa reveal a gradual suppression of ferromagnetism in terms of a reduction of the critical transition temperature, a broadening of the transition width and an increase of the field necessary to fully saturate the magnetization $M_{\rm s}$. The value of $M_{\rm s} \simeq 3μ_{\rm B}$/Cr remains constant within the error bars up to a pressure of 2.8 GPa. The anisotropy of the FMR signal continuously diminishes in the studied hydrostatic pressure range up to 2.39 GPa suggesting a reduction of the easy-axis type magnetocrystalline anisotropy energy (MAE). A quantitative analysis of the FMR data gives evidence that up to this pressure the MAE constant $K_{\rm U}$, although getting significantly smaller, still remains finite and positive, i.e. of the easy-axis type. Therefore, a recently discussed possibility of switching the sign of the magnetocrystalline anisotropy in Cr$_2$Ge$_2$Te$_6$ could only be expected at still higher pressures, if possible at all due to the observed weakening of the ferromagnetism under pressure. This circumstance may be of relevance for the design of strain-engineered functional heterostructures containing layers of Cr$_2$Ge$_2$Te$_6$.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源