论文标题
结构和磁性障碍对3 $ d $ -5 $ d $ la $ _ {2-x} $ ca $ _ {x} $ coiro $ _ {6} $的交换交流的影响
The effect of structural and magnetic disorder on the 3$d$-5$d$ exchange interactions of La$_{2-x}$Ca$_{x}$CoIrO$_{6}$
论文作者
论文摘要
在基于IR的氧化物中观察到的自旋轨道耦合,库仑排斥和结晶电场相互作用之间的微妙平衡通常表现为外来磁性行为。在这里,我们调查了Co和ir之间的交换耦合的演变,以ca in la $ _ {2} $ coiro $ _6 $替换。使用Ca $^{2+} $作为La $^{3+} $替代的一个很大的优势是其离子半径的相似性。因此,观察到的磁变化更容易与电子变化有关。对LA $ _ {2-X} $ CA $ _ {X} $ COIRO $ _6 $系统的结构,电子和磁性的彻底研究是通过同步X射线粉末衍射,Muon Spin和放松旋转和放松($ $ SR和DC MAGNETITION,XAS,RAM,RAM,RAM,RAM,RAM,RAM,RAM,RAM,RAM,RAMCD,RAMCD,RAMCD,RAMCD,RAMCD,RAM,RAMCD,RAMCD,RAMCD,RAMCD,RAMCD,RAMCD介电常数。我们的XAS结果表明,在LA站点,高达25%的CA替代导致CO $^{3+} $的出现,可能处于高旋转状态,而引入大量的CA会导致IR Valence的增加。由混合价产生的竞争磁相互作用导致磁性样品的磁有序和新兴的自旋玻璃(SG)状态共存。我们的$μ$ SR结果表明,对于la $ _ {2} $ coiro $ _6 $,几乎恒定的顺磁性(PM)阶段持续降低至低温,可能与少量的IR $^{3+} $以及与CO/IR IR站点的抗现场障碍有关。对于掺杂化合物,PM相冻结在30 K以下,但仍然存在一些与SG相关的动力学。为母体化合物获得的介电数据和25%的Ca掺杂的介电数据表明可能具有磁性纤维效应,这是根据TM离子,抗位于抗位点疾病和扭曲的晶体结构之间的电子跳跃讨论的。
The delicate balance between spin-orbit coupling, Coulomb repulsion and crystalline electric field interactions observed in Ir-based oxides is usually manifested as exotic magnetic behavior. Here we investigate the evolution of the exchange coupling between Co and Ir for partial La substitution by Ca in La$_{2}$CoIrO$_6$. A great advantage of the use of Ca$^{2+}$ as replacement for La$^{3+}$ is the similarity of its ionic radii. Thus, the observed magnetic changes can more easily be associated to electronic variations. A thorough investigation of the structural, electronic and magnetic properties of the La$_{2-x}$Ca$_{x}$CoIrO$_6$ system was carried out by means of synchrotron x-ray powder diffraction, muon spin rotation and relaxation ($μ$SR), AC and DC magnetization, XAS, XMCD, Raman spectroscopy, electrical resistivity and dielectric permittivity. Our XAS results show that up to 25% of Ca substitution at the La site results in the emergence of Co$^{3+}$, possibly in high spin state, while the introduction of larger amount of Ca leads to the increase of Ir valence. The competing magnetic interactions resulting from the mixed valences lead to a coexistence of a magnetically ordered and an emerging spin glass (SG) state for the doped samples. Our $μ$SR results indicate that for La$_{2}$CoIrO$_6$ a nearly constant fraction of a paramagnetic (PM) phase persists down to low temperature, possibly related to the presence of a small amount of Ir$^{3+}$ and to the anti-site disorder at Co/Ir sites. For the doped compounds the PM phase freezes below 30 K, but there is still some dynamics associated with the SG. The dielectric data obtained for the parent compound and the one with 25% of Ca-doping indicate a possible magnetodielectric effect, which is discussed in terms of the electron hopping between the TM ions, the anti-site disorder and the distorted crystalline structure.