在Zn0.5Mn0.5Fe2O4纳米颗粒的相互作用组合中,超旋玻璃状态
Sudeep Tiwari1, Manisha Chalka2, Jiri Pechousek3
1Department of Physics, Mohanlal Sukhadia University, Faculty of Science, MB Campus, Durga Nursery Road, Udaipur, Udaipur, Rajasthan, 313002, INDIA.
这项研究研究了Zn0.5Mn0.5Fe2O4纳米粒子中的超旋玻璃 (SSG) 状态. 研究人员证实了SSG相位过渡及其对低温磁相互作用的依赖.
科学领域:
- 凝聚物质物理学 凝聚物质物理学
- 材料科学 材料科学 材料科学
- 纳米技术纳米技术
背景情况:
- Zn0.5Mn0.5Fe2O4纳米粒子 (ZMFNP) 呈现出复杂的磁性行为.
- 了解像超旋玻璃 (SSG) 这样的低温磁相对于纳米铁应用至关重要.
研究的目的:
- 在相互作用的Zn0.5Mn0.5Fe2O4纳米粒子 (ZMFNP) 中研究超旋玻璃 (SSG) 状态.
- 阐明从超偏磁性 (SPM) 到SSG的磁性相位过渡,并确定底层机制.
主要方法:
- 使用了全方位的直流磁化测量 (ZFC,FC,TRM).
- 分析包括兰格温函数拟合,57Fe Mössbauer光谱,同热残余磁化和电子自旋共振 (ESR).
- 使用老化效应和亨克尔图片来确认SSG阶段.
主要成果:
- 在冷却过程中,ZMF NPs从超偏磁性 (SPM) 转变为铁磁性 (FiM).
- 从SPM到SSG行为的明显交叉观察到120 K左右.
- 记忆效应,海森伯格式的旋转维度和放松动态证实了SSG阶段.
结论:
- 二极相互作用和去磁化因素是低温ZMFNP中SSG行为的关键驱动因素.
- 绿色合成的ZMFNP为研究纳米铁中低温纳米磁性提供了一个有价值的平台.
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