Mohanty Sipun, Mukherjee Samrat
Department of Physics, National Institute of Technology Patna, Bihar 800005, India.
J Phys Condens Matter. 2024 Aug 12;36(45). doi: 10.1088/1361-648X/ad69f2.
In this paper, we report a complex magnetic behavior arising due to the interplay of three active magnetic cations (Nd/Sm, Co and Ir), forming 3d-5d-4f magnetic sublattices. The B-site ordered double perovskites NdCoIrOand SmCoIrOwere successfully prepared by conventional solid-state method. Detailed structural analysis revealed that both samples crystallized in monoclinic structure with P2/n (No.-14) space group. X-ray photoelectron spectroscopy analysis confirms the presence of multiple oxidation states of Ir (i.e. Irand Ir). Both samples show a paramagnetic-ferrimagnetic (T) transition around 100 K, additionally, a low temperature transition is observed at around 10 K in the SCIO sample. This FM-like behavior of the samples is attributed to the antiparallel alignment of the Coand Irspins, resulting in FiM ordering. The ac susceptibility analysis confirms a spin glass type transition just below the long-range ordering temperature in NCIO sample, The obtained characteristic flipping time of a single spin from both the law (Power law and Vogel-Fulcher law) and nonzero Vogel-Fulcher temperature (T0≃ 89.1 K) further verified the existence of cluster spin-glass behavior below the ordering temperature. The temperature evolution of phonon modes (up to 4 K) suggests that the phonon mode above the magnetic ordering temperature is mainly governed by the lattice degrees of freedom; notable renormalization of the mode frequency below the ordering temperature is due to the coupling of lattice with the underlying magnetic degrees of freedom.
在本文中,我们报道了由于三种活性磁性阳离子(钕/钐、钴和铱)相互作用而产生的复杂磁行为,它们形成了3d - 5d - 4f磁性亚晶格。通过传统固态方法成功制备了B位有序双钙钛矿NdCoIrO和SmCoIrO。详细的结构分析表明,两个样品均结晶为单斜结构,空间群为P2/n(编号 - 14)。X射线光电子能谱分析证实了铱存在多种氧化态(即Ir和Ir)。两个样品在100 K左右均显示出顺磁 - 亚铁磁(T)转变,此外,在SCIO样品中,在10 K左右观察到低温转变。样品的这种类似铁磁的行为归因于Co和Ir自旋的反平行排列,导致FiM有序。交流磁化率分析证实,在NCIO样品中,在长程有序温度以下刚好存在自旋玻璃型转变。从定律(幂律和Vogel - Fulcher定律)和非零Vogel - Fulcher温度(T0≃89.1 K)获得的单个自旋的特征翻转时间进一步证实了在有序温度以下存在团簇自旋玻璃行为。声子模式的温度演化(高达4 K)表明,高于磁有序温度的声子模式主要由晶格自由度控制;低于有序温度时模式频率的显著重整化是由于晶格与潜在磁自由度的耦合。