论文标题
EUMG2BI2单晶的磁,热和电子转运特性
Magnetic, thermal, and electronic-transport properties of EuMg2Bi2 single crystals
论文作者
论文摘要
三角化合物EUMG2BI2最近已根据其拓扑带的特性进行了讨论。这些与其磁性特性交织在一起。这里介绍了EUMG2BI2单晶的磁,热和电子传输性能的详细研究。如前所述,EU {+2} spins-7/2在温度Tn = 6.7 K处表现出抗铁磁(AFM)过渡。通过分析以下分子场理论(MFT)的各向异性磁敏感性CHI数据,推断出AFM结构是C轴螺旋,在该螺旋中,在六边形AB平面层中的有序矩在AB平面上是在AB平面中与AB平面相一致的,在AB平面中,在辅助矩之间的距离为12次,在AB之间进行了角度的旋转,该量均在1次均衡时刻。磁热容量在TN处表现出lambda异常,并且在TN上方和下方都表现出动态短磁性波动的证据。磁熵的高量极限接近Spins-7/2的理论值。平面内电阻率RHO(t)数据表明金属特性,低于Tmin = 23 K的轻度和无序敏感的上曲。在零场中发现的Rho(t)冷却下的Rho(T)的异常快速下降被磁场的两步降低。 RHO(t)测量还显示出在未知来源的应用领域以下的额外过渡,在其他测量值中未观察到,并且可能与不合质量相对应相称的AFM过渡。 TN对C轴磁场HPERP的依赖性来自依赖于场的CHI(T),CP(T)和RHO(T)测量值。发现该TN(HPERP)与S = 7/2的C轴螺旋的MFT预测一致,并用于在HPERP-T平面中生成相图。
The trigonal compound EuMg2Bi2 has recently been discussed in terms of its topological band properties. These are intertwined with its magnetic properties. Here detailed studies of the magnetic, thermal, and electronic transport properties of EuMg2Bi2 single crystals are presented. The Eu{+2} spins-7/2 in EuMg2Bi2 exhibit an antiferromagnetic (AFM) transition at a temperature TN = 6.7 K, as previously reported. By analyzing the anisotropic magnetic susceptibility chi data below TN in terms of molecular-field theory (MFT), the AFM structure is inferred to be a c-axis helix, where the ordered moments in the hexagonal ab-plane layers are aligned ferromagnetically in the ab plane with a turn angle between the moments in adjacent moment planes along the c axis of about 120 deg. The magnetic heat capacity exhibits a lambda anomaly at TN with evidence of dynamic short-range magnetic fluctuations both above and below TN. The high-T limit of the magnetic entropy is close to the theoretical value for spins-7/2. The in-plane electrical resistivity rho(T) data indicate metallic character with a mild and disorder-sensitive upturn below Tmin = 23 K. An anomalous rapid drop in rho(T) on cooling below TN as found in zero field is replaced by a two-step decrease in magnetic fields. The rho(T) measurements also reveal an additional transition below TN in applied fields of unknown origin that is not observed in the other measurements and may be associated with an incommensurate to commensurate AFM transition. The dependence of TN on the c-axis magnetic field Hperp was derived from the field-dependent chi(T), Cp(T), and rho(T) measurements. This TN(Hperp) was found to be consistent with the prediction of MFT for a c-axis helix with S = 7/2 and was used to generate a phase diagram in the Hperp-T plane.