论文标题
电荷转移和无序诱导的la2nimno6晶体中的自旋松弛
Charge transfer and disorder-induced spin relaxation in La2NiMnO6 crystallites
论文作者
论文摘要
对双钙壶中的电子和自旋结构的研究最近引起了极大的关注,这主要是由于其独特的多功能性能以及其他基础电荷和自旋动力学的驱动。此处,使用X射线光电子光谱(XPS),我们探索了LA2NIMNO6不同晶体尺寸的MN3+/MN4+阳离子的可变分数的影响,这些ni/Mn阳离子的各种完成交换相互作用负责多次磁性转移。由于MN4++ Ni2+到Mn3++ Ni3+电荷转移引起的增强的巡回电子在MN-2P核心水平频谱中低结合能的肩部类似特性出现。各种方法,例如饱和磁化的差异,存在多电荷价和磁熵计算,证实了抗弥漫性疾病的存在,并且它随铣削的函数而变化。由于铣削提供了有助于成核或阳离子排序的过多能量。由混合价值和混乱驱动的竞争磁相互作用是在晶体中建立的,在簇状的玻璃相之间。电子自旋谐振光谱(ESR)用于探测温度驱动的铁磁群集旋转玻璃玻璃转变,其修饰的G因子范围为2.050至2.037。 ESR信号的线宽度在旋转冰冻引起的跨铁磁向聚类玻璃相变的范围内增加。该相变的进一步特征是依赖温度的AC磁敏感性测量。相互作用的微晶的AC敏感性的Argand图表明,LA2NIMNO6的旋转玻璃冻结温度的接近度具有集体磁化弛豫动态。
Investigation of the electronic and spin structure in double perovskites is recently attracting significant attention, mainly driven by their unique multifunctional properties and other underlying charge and spin dynamics. Herein, using X-ray photoelectron spectroscopy (XPS), we explore the influence of variable fractions of Mn3+/Mn4+ cation in different crystallite sizes of La2NiMnO6 that control the various completing exchange interactions of Ni/Mn cations responsible for multiple magnetic transitions. The enhanced itinerant electron due to Mn4+ + Ni2+ to Mn3+ + Ni3+ charge transfer emerged as a shoulder like characteristics at the low binding energy in the Mn-2P core-level spectrum. The various approaches such as difference in saturation magnetization, presence of multiple charge valance, and magnetic entropy calculations confirm the presence of antisites disorder and it varies as a function of milling. As milling provides excess energy that helps with nucleation or cation ordering. Competing magnetic interactions driven by mixed valences and disorder were established across a cluster glassy phase in the crystallites. Electron spin resonance spectroscopy (ESR) was utilized to probe the temperature-driven ferromagnetic-cluster spin-glass transition with modified g-factor ranging from 2.050 to 2.037. The line width of the ESR signals increases across the ferromagnetic to cluster-glass phase transition due to spin freezing. This phase transition is further characterized by temperature-dependent ac-magnetic susceptibility measurements. Argand diagram for the ac-susceptibility of the interacting crystallites suggests a collective magnetization relaxation dynamic in the proximity of spin-glass freezing temperature of La2NiMnO6.