论文标题

分子交换偏置系统中旋转玻璃状态的证据

Evidence of Spin-Glass state in Molecular Exchange-Bias System

论文作者

Mundlia, Suman, Raman, Karthik V.

论文摘要

在传统的交换偏见系统中,包括双层胶片(FM)和防铁磁铁(AFM)的组成,研究了AFM内部的自旋序列和自旋施法的作用以及在界面上的作用至关重要,这对于理解了控制交换 - 局势的基本机制 - 导致响应的效应,导致了一个响应的效果,使其在水平范围内变化。同样,在最近报道的单层分子交换偏置效应中,不需要AFM层,在FM/分子界面或FM层内探测磁性数据,可以为分子交换偏置和相关物理的起源提供新的见解。在本文中,通过在振荡磁场中冷却Fe/金属 - 苯苯胺装置,我们演示了支持旋转玻璃行为的特征性温度依赖性响应和铁磁体的固定响应。在这里,旋转玻璃的起源归因于在Fe层的磁性结构中产生的自旋挫败感,这在我们的参考FE研究中没有。这些结果突出了FM/分子界面PI-D杂交对磁交换相互作用的强大影响,更深地扩展到FM层。

In conventional exchange-bias system comprising of a bilayer film of ferromagnet (FM) and antiferromagnet (AFM), investigating the role of spin-disorder and spin-frustration inside the AFM and at the interface has been crucial in understanding the fundamental mechanism controlling the exchange-bias -- an effect that leads to a horizontal shift in the magnetization hysteresis response of the FM. Similarly, in the recently reported monolayer molecular exchange-bias effect requiring no AFM layer, probing magnetic-disorder at the FM/molecule interface or inside the FM layer can provide new insights into the origin of molecular exchange-bias and the associated physics. In this article, by cooling the Fe/metal-phthalocyanine devices in oscillating magnetic field, we demonstrate a characteristic temperature dependent response of exchange-bias shift and ferromagnet coercivity that is supportive of a spin-glass behavior. Here, the origin of spin-glass is attributed to the spin frustration created in the magnetic structure of the Fe layer, which was absent in our reference-Fe studies. These results highlight the strong influence of FM/molecule interface pi-d hybridization on the magnetic exchange interactions extending deeper into the FM layer.

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