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Magnetism and interactions within the single domain limit: reversal, logic and information storage.

机译:单一域内的磁性和相互作用:反转,逻辑和信息存储。

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摘要

Magnetism and magnetic material research on mesoscopic length scale, especially on the size-dependent scaling laws have drawn much attention. From a scientific point of view, magnetic phenomena would vary dramatically as a function of length, corresponding to the multi-single magnetic domain transition. From an industrial point of view, the application of magnetic interaction within the single domain limit has been proposed and studied in the context of magnetic recording and information processing. In this thesis, we discuss the characteristic lengths in a magnetic system resulting from the competition between different energy terms. Further, we studied the two basic interactions within the single domain limit: dipole interaction and exchange interaction using two examples with practical applications: magnetic quantum-dot cellular automata (MQCA) logic and bit patterned media (BPM) magnetic recording.;Dipole interactions within the single domain limit for shape-tuned nanomagnet array was studied in this thesis. We proposed a 45° clocking mechanism which would intrinsically eliminate clocking misalignments. This clocking field was demonstrated in both nanomagnet arrays for signal propagation and majority gates for logic operation. Correct output and robust performance were detected for both configurations. Further, more complicated design, two digital binary full adder, was carried out. This novel design provides high stability for logic operation of MQCA and potentially paves way for its application.;In addition, the magnetization reversal in perpendicular magnetic anisotropy (PMA) system and its dependence on scaling law were studied. High quality epitaxial L10 FePdPt and FePt thin films on MgO (001) substrate was fabricated. For FePd binary alloy thin films, we observed that Pt addition and low temperature post annealing would facilitate L10 chemical ordering. For FePt thin film samples, reversal process and magnetic behavior were studied for both continuous film and patterned dots array. Further, patterned dots arrays within different length scale were developed to reveal the multi/single domain transition, which is observed to be around 200 nm for our L10 FePt thin film. Finally, sub-100 nm dots array in a large area was carried out for both L10 FePt monolayer and FePt/Co bilayer heterostructure. The high patterning quality was demonstrated in the uniform dot size distribution, and the magnetic properties of the dots array indicates a good candidate for the application of bit-patterned media (BPM) exchange coupled composite (ECC) magnetic recording.
机译:介观长度尺度,尤其是与尺寸有关的尺度定律的磁性和磁性材料研究引起了广泛关注。从科学的角度来看,磁现象将随着长度的变化而发生巨大变化,对应于多单磁畴跃迁。从工业角度来看,已经在磁记录和信息处理的背景下提出并研究了磁相互作用在单畴极限内的应用。在本文中,我们讨论了磁系统中由于不同能量项之间的竞争而引起的特征长度。此外,我们使用两个实际应用实例研究了单域范围内的两个基本相互作用:偶极相互作用和交换相互作用:磁性量子点细胞自动机(MQCA)逻辑和位模式媒体(BPM)磁记录;内部的偶极相互作用本文研究了形状调谐纳米磁体阵列的单畴极限。我们提出了一种45°时钟机制,从根本上消除了时钟未对准问题。在用于信号传播的纳米磁铁阵列和用于逻辑操作的多数门中都展示了这种时钟场。两种配置均检测到正确的输出和强大的性能。此外,进行了更复杂的设计,即两个数字二进制全加器。这种新颖的设计为MQCA的逻辑运算提供了很高的稳定性,并为它的应用铺平了道路。此外,还研究了垂直磁各向异性(PMA)系统中的磁化反转及其对比例定律的依赖性。在MgO(001)衬底上制造了高质量的外延L10 FePdPt和FePt薄膜。对于FePd二元合金薄膜,我们观察到Pt的添加和低温后退火将促进L10的化学有序化。对于FePt薄膜样品,研究了连续膜和图案化点阵列的逆过程和磁行为。此外,开发了在不同长度范围内的图案化点阵列,以揭示多/单畴过渡,对于我们的L10 FePt薄膜,观察到大约200 nm。最后,对L10 FePt单层和FePt / Co双层异质结构都进行了大面积的亚100 nm点阵列。在均匀的点尺寸分布中证明了高图案质量,并且点阵列的磁性能表明它是应用位图介质(BPM)交换耦合复合(ECC)磁记录的良好候选者。

著录项

  • 作者

    Li, Zheng.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Materials science.;Nanoscience.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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