论文标题
CMR Compound NACR $ _2 $ o $ $ _4 $的修订磁结构和三级行为,并用高分辨率中子衍射和$μ^+$ sr
Revised Magnetic Structure and Tricritical Behavior of the CMR Compound NaCr$_2$O$_4$ Investigated with High Resolution Neutron Diffraction and $μ^+$SR
论文作者
论文摘要
使用高压技术合成的混合价CR复合NACR NACR NACR NACR NACR $ $ _4 $,为调查冷凝物质中非常规物理特性提供了独特的操场。在本研究中,进行了MUON自旋旋转/松弛($μ^+$ SR)和高分辨率中子粉末衍射(NPD)测量,以阐明这种有趣的化合物的真实磁接地状态。我们的详细研究带来了新的见解,使我们能够确认存在相应的防铁磁序(C-AFM),并提取其有序的CR矩$μ^{\ rm C} _ {\ rm cr} =(4.30 \ pm0.01)μ__b$。实际上,这种有序力矩的值实际上与高旋转CR位点的存在兼容。此外,将Cr旋转轴向向量的倾斜角度的值改进为$θ_ {\ rm c} =(8.8 \ pm0.5)^{\ circ} $。还揭示了一种新型的磁性超级电池,采用高质量的样品与飞行时间NPD结合使用。这样的超级电池显示不加压的(IC)-Afm繁殖向量(0〜 $ {\ textStyle \ frac {1} {2} {2} - }δ$),具有订购的矩$μ^{\μ^{\ rm IC} _} _ {\ rm ic} _ {\ rm cr} =(2.20 \ rm cr} =(2.20 \ rm cr} =(2.20 \ pm0.033)。建议C-AFM和IC-AFM调制分别是由于对磁矩的巡回和局部贡献所致。最后,磁性顺序参数的直接测量提供了关键指数$β= 0.245 \ of frac {1} {4} $的值,这表明NACR $ _2 $ o $ o $ o $ _4 $中的磁相变过的非常规关键行为。
The mixed valence Cr compound NaCr$_2$O$_4$, synthesized using a high-pressure technique, offers a unique playground for investigating unconventional physical properties in condensed matter. In the present study, muon spin rotation/relaxation ($μ^+$SR) and high-resolution neutron powder diffraction (NPD) measurements were carried out to clarify the true magnetic ground state of this interesting compound. Our detailed study brings new insight, allowing us to confirm the existence of a commensurate antiferromagnetic order (C-AFM) and to extract its ordered Cr moment $μ^{\rm C}_{\rm Cr}=(4.30\pm0.01)μ_B$. Such a value of the ordered moment is in fact compatible with the existence of high-spin Cr sites. Further, the value of the canting angle of the Cr spin axial vector is refined as $θ_{\rm c}=(8.8\pm0.5)^{\circ}$. Employing high-quality samples in combination with time-of-flight NPD, a novel magnetic supercell was also revealed. Such supercell display an incommensurate (IC)-AFM propagation vector (0~0~${\textstyle \frac{1}{2}-}δ$), having an ordered moment $μ^{\rm IC}_{\rm Cr}=(2.20\pm0.03)μ_B$. It is suggested that the C-AFM and IC-AFM modulations are due to itinerant and localized contributions to the magnetic moment, respectively. Finally, the direct measurement of the magnetic order parameter provided a value of the critical exponent $β= 0.245 \approx \frac{1}{4}$, suggesting a non conventional critical behavior for the magnetic phase transition in NaCr$_2$O$_4$.