论文标题
反位点的CA2MNOSO6的室温铁磁性
Room-temperature ferrimagnetism of anti-site-disordered Ca2MnOsO6
论文作者
论文摘要
发现了抗位点的perovskite Ca2mnoso6,TC = 305k。Ca2mnoso6发现了与空间群的正交结构,MN和OS在其中共享氧气和OS在不相等的情况下,室温是tc = 305 K. Ca2mnoso6,发现了室温的铁磁性。该材料以可变范围的跳动行为进行了半导体。 X射线吸收光谱证实了MN的三价状态和OS的五价状态。 X射线磁性圆形二分法光谱表明,MN和OS磁矩在抗磁磁体上是对齐的,从而将材料分类为符合条带结构计算的Ferrimagnet。有趣的是,OS的磁信号非常弱,并且观察到的总磁矩主要是由于MN引起的。 TC = 305 K是所谓无序的铁磁体(例如Caru1-XMNXO3,Srru1-XCRXO3和CAIR1-XMNXO3)的材料类别中的第二高,因此可能支持带有抗药性抗磁性抗磁性的抗抗氧化物的Spertronic氧化物的发展。
Room-temperature ferrimagnetism was discovered for the anti-site-disordered perovskite Ca2MnOsO6 with Tc = 305 K. Ca2MnOsO6 crystallizes into an orthorhombic structure with a space group of Pnma, in which Mn and Os share the oxygen-coordinated-octahedral site at an equal ratio without a noticeable ordered arrangement. The material is electrically semiconducting with variable-range-hopping behavior. X-ray absorption spectroscopy confirmed the trivalent state of the Mn and the pentavalent state of the Os. X-ray magnetic circular dichroism spectroscopy reveals that the Mn and Os magnetic moments are aligned antiferromagnetically, thereby classifying the material as a ferrimagnet which is in accordance with band structure calculations. It is intriguing that the magnetic signal of the Os is very weak, and that the observed total magnetic moment is primarily due to the Mn. The Tc = 305 K is the second highest in the material category of so-called disordered ferromagnets such as CaRu1-xMnxO3, SrRu1-xCrxO3, and CaIr1-xMnxO3, and hence, may support the development of spintronic oxides with relaxed requirements concerning the anti-site disorder of the magnetic ions.