标题: | 利用一阶回转曲线及磁圆偏振光谱针对L10-FePt/Ni双层膜翻转行为之探讨 Reversal mechanism of L10-FePt/Ni investigated by first-order-reversal-curves and x-ray magnetic circular dichroism |
作者: | 李一宪 Lee, I-Hsien 曾院介 Tseng, Yuan-Chieh 材料科学与工程学系所 |
关键字: | 一阶回转曲线;磁圆偏振光谱;序化铁白金;复合式交换偶合媒体;磁化翻转;first-order-reversal-curves;x-ray magnetic circular dichroism;L10-FePt;Exchange coupled composite media;magnetic reversal mechanism |
公开日期: | 2014 |
摘要: | 近来,因磁记录媒体密度需求不断提升,具有高垂直磁晶异向性材料被广泛地研究。含有软、硬磁层所组成之复合式交换偶合之方式制作具有垂直异向性之磁性膜将能克服在磁记录媒体在发展上的瓶颈。甚至可以透过调整软、硬磁层的性质、比例等,达到各种不同的磁性质需求。其中,软、硬磁层间交互作用力是影响整个磁化翻转机制的关键,而磁化翻转机制则决定了磁记录媒体的功能性。因此,能够提供量测软、硬磁层连接后的磁化翻转过程的工具是非常重要的。 本实验结合了磁圆偏振光谱与一阶回转曲线技术来探讨一系列Ni/L10-FePt复合式交换偶合媒体之磁化翻转特性。其中,磁圆偏振光谱能够探测软、硬磁层中特定元素所产生的磁贡献量;一阶回转曲线则能量测磁化翻转之分布图、各种磁相之状态以及交互作用力的分布情况。 研究结果显示,在介面处之交互作用将会造成磁区壁难以穿越软、硬磁层介面,而软磁层厚度的不同将导致磁区壁穿越软、硬磁层介面能力的差异。此外,透过翻转场分布的分析,可从磁滞曲线中分解出各个磁化翻转步骤,并进一步解释其物理意义。 本研究结果对软、硬磁层间交互作用有更深入的了解,并可运用此交互作用进而改变类似结构之材料系统特性,制备未来所需的磁性薄膜。 Magnetic thin films with strong perpendicular anisotropy are intensively studied due to the increasing demand in high-density recording media. Perpendicular magnetic films with an exchange coupled composite (ECC) structure containing soft and hard layers offer the possibilities to satisfy many conflicting requirements in the world of magnetic recording. Especially, its flexibility of tuning the soft/hard layer properties plays as a versatile toolbox that provides all kinds of degree of freedom to achieve that goal. The magnetization reversal is one of the critical mechanisms determining a recording medium’s functionality, where the soft-hard layer interactions predominantly drive the whole mechanism. Characterization tools that can precisely monitor the reversal processes in various soft-hard combinations are highly desired in this field. In this study we enlisted a combination of x-ray magnetic circular dichroism (XMCD) and first order reversal curves (FORC) to explore the switching characteristics of a series of Ni/L10-FePt ECC, where XMCD probed magnetic contributions from soft/hard layers with element-specificity, while FORC provided information such as a full mapping of magnetic switching, coexistence of various magnetic natures, and the distribution of interaction field. The study points to strong sensitivity of interfacial interactions to the attendant phenomenon, such as different levels of domain-penetration from soft to hard layers by manipulating one layer through the other. By operating sophisticated switching field distribution (SFD) analyses, we further decomposed the major hysteresis loop into multiple switching components to further expound the physics behind the theme. The results open up opportunities to tailor the properties of similar systems by manipulating the soft-hard interdependency because of a deeper understanding of the subject matter. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070151517 http://hdl.handle.net/11536/76187 |
显示于类别: | Thesis |
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