论文标题

YCRO的高温磁和晶体学$ _3 $单晶

High-temperature magnetism and crystallography of a YCrO$_3$ single crystal

论文作者

Zhu, Yinghao, Wu, Si, Tu, Bao, Jin, Shangjian, Huq, Ashfia, Persson, Joerg, Gao, Haoshi, Ouyang, Defang, He, Zhubing, Yao, Dao-Xin, Tang, Zikang, Li, Hai-Feng

论文摘要

对高温(300--980 K)的磁性测量和飞行时间的中子粉末 - 划分研究已经执行了粉状的YCRO $ _3 $单晶的磁性和晶体结构(321---1200 K)。温度依赖性的逆磁敏感性与分段线性函数相吻合,并与五个方案相吻合,我们符合居里 - 韦斯法律,并计算出挫败感因子$ f $。拟合结果表明在300至540 K之间形成了磁性极性,并且非常强烈的磁性挫败感。通过包括一个代表旋转相互作用程度到Brillouin函数的一个因子$η$,我们可以很好地适合磁化的应用磁场依赖性。 No structural phase transition was observed from 321 to 1200 K. The average thermal expansions of lattice configurations (\emph{a}, \emph{b}, \emph{c}, and \emph{V}) obey well the Gr$\ddot{\textrm{u}}$neisen approximations with an anomaly appearing around 900 K,暗示异构结构相变,并沿着晶体学\ emph {a},\ emph {b}和\ emph {c}轴与不可压缩性$ k^a_0> k^c_0> k^c_0> k^b_0 $。有趣的是发现在321 K时,本地失真尺寸$δ$(O2)$ \ $ 1.96 $δ$(O1)$ \ $ 4.32 $δ$(y)$ \ $ 293.89 $δ$(CR)。根据精致的Y-O和CR-O键长,我们推断出Y,CR,O1和O2离子的局部变形环境和模式。特别是,Y和O2离子显示明显的原子位移和俯冲,这可能会揭示YCRO $ _3 $化合物的介电特性。此外,通过将Kramers Mn $^{3+} $与非kramers cr $^{3+} $离子进行比较,可以指出,成为kramers或非kramers离子可以强烈影响局部失真尺寸,而虽然可能无法更改详细的失真模式。

Magnetization measurements and time-of-flight neutron powder-diffraction studies on the high-temperature (300--980 K) magnetism and crystal structure (321--1200 K) of a pulverized YCrO$_3$ single crystal have been performed. Temperature-dependent inverse magnetic susceptibility coincides with a piecewise linear function with five regimes, with which we fit a Curie-Weiss law and calculate the frustration factor $f$. The fit results indicate a formation of magnetic polarons between 300 and 540 K and a very strong magnetic frustration. By including one factor $η$ that represents the degree of spin interactions into the Brillouin function, we can fit well the applied-magnetic-field dependence of magnetization. No structural phase transition was observed from 321 to 1200 K. The average thermal expansions of lattice configurations (\emph{a}, \emph{b}, \emph{c}, and \emph{V}) obey well the Gr$\ddot{\textrm{u}}$neisen approximations with an anomaly appearing around 900 K, implying an isosymmetric structural phase transition, and display an anisotropic character along the crystallographic \emph{a}, \emph{b}, and \emph{c} axes with the incompressibility $K^a_0 > K^c_0 > K^b_0$. It is interesting to find that at 321 K, the local distortion size $Δ$(O2) $\approx$ 1.96$Δ$(O1) $\approx$ 4.32$Δ$(Y) $\approx$ 293.89$Δ$(Cr). Based on the refined Y-O and Cr-O bond lengths, we deduce the local distortion environments and modes of Y, Cr, O1, and O2 ions. Especially, the Y and O2 ions display obvious atomic displacement and charge subduction, which may shed light on the dielectric property of the YCrO$_3$ compound. Additionally, by comparing Kramers Mn$^{3+}$ with non-Kramers Cr$^{3+}$ ions, it is noted that being a Kramers or non-Kramers ion can strongly affect the local distortion size, whereas, it may not be able to change the detailed distortion mode.

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