论文标题

强烈的单轴压力依赖性演示了旋转晶格耦合和旋转波动,$ _2 $ _2 $ ge $ _2 $ _2 $ _6 $

Strong uniaxial pressure dependencies evidencing spin-lattice coupling and spin fluctuations in Cr$_2$Ge$_2$Te$_6$

论文作者

Spachmann, S., Selter, S., Büchner, B., Aswartham, S., Klingeler, R.

论文摘要

高分辨率电容扩张测量法研究了Cr $ _2 $ _2 $ ge $ _2 $ te $ _6 $的研究“磁弹性”相图并分离顺磁性(PM),铁磁低温/低场(LTF)和对齐的铁磁(FM)相。在小磁场上存在两个不同的热膨胀异常,不同磁场依赖的$ b \ paralleal ab $清楚地支持了分隔PM和LTF阶段的中间区域的场景,并且表明了三个智力点。使用Stoner-Wohlfarth模型进行单轴各向异性的磁截图表明,在LTF相中,观察到的二次景点行为与从首选的$ C $方向旋转到$ ab $平面。 LTF和PM阶段几乎接近T $ _ {\ rm c} $表现出非常强的磁化压力依赖性,$ {\ partial} \ ln {m _ {\ rm ab}}/{\ partial} p _ {\ rm ab ab}在$ p _ {\ rm ab} $($ \ sim- $ 280%/gpa)上,表明在施加的平面内压力下,单轴各向异性大大降低。我们的数据清楚地证明了关键波动和磁弹性耦合在Cr $ _2 $ GE $ _2 $ TE $ _6 $中的相关性。

Single crystals of Cr$_2$Ge$_2$Te$_6$ were studied by high-resolution capacitance dilatometry to obtain in-plane ($B\parallel ab$) and out-of-plane ($B\parallel c$) thermal expansion and magnetostriction at temperatures between 2 and 300 K and in magnetic fields up to 15 T. The anomalies in both response functions lead to the 'magnetoelastic' phase diagrams and separate the paramagnetic (PM), ferromagnetic low-temperature/low-field (LTF) and aligned ferromagnetic (FM) phases. The presence of two distinct thermal expansion anomalies at small fields $B\parallel ab$ of different magnetic field dependence clearly supports the scenario of an intermediate region separating PM and LTF phases and is indicative of a tricritical point. Simulations of the magnetostriction using the Stoner-Wohlfarth model for uniaxial anisotropy demonstrate that the observed quadratic-in-field behavior in the LTF phase is in line with a rotation of the spins from the preferred $c$ direction into the $ab$ plane. Both the LTF and the PM phase close to T$_{\rm C}$ exhibit very strong pressure dependencies of the magnetization, ${\partial}\ln{M_{\rm ab}}/{\partial}p_{\rm ab}$, of several hundred %/GPa and also the transition from the LTF to the FM phase strongly depends on $p_{\rm ab}$ ($\sim -$280%/GPa), indicating a strong decrease of the uniaxial anisotropy under applied in-plane pressure. Our data clearly demonstrate the relevance of critical fluctuations and magnetoelastic coupling in Cr$_2$Ge$_2$Te$_6$.

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