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Bit patterned media with composite structure for microwave assisted magnetic recording.

机译:具有复合结构的位图介质,用于微波辅助磁记录。

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摘要

Patterned magnetic nano-structures are under extensive research due to their interesting emergent physics and promising applications in high-density magnetic data storage, through magnetic logic to bio-magnetic functionality. Bit-patterned media is an example of such structures which is a leading candidate to reach magnetic densities which cannot be achieved by conventional magnetic media.;Patterned arrays of complex heterostructures such as exchange-coupled composites are studied in this thesis as a potential for next generation of magnetic recording media. Exchange-coupled composites have shown new functionality and performance advantages in magnetic recording and bit patterned media provide unique capability to implement such architectures. Due to unique resonant properties of such structures, their possible application in spin transfer torque memory and microwave assisted switching is also studied.;This dissertation is divided into seven chapters. The first chapter covers the history of magnetic recording, the need to increase magnetic storage density, and the challenges in the field. The second chapter introduces basic concepts of magnetism. The third chapter explains the fabrication methods for thin films and various lithographic techniques that were used to pattern the devices under study for this thesis. The fourth chapter introduces the exchanged coupled system with the structure of [Co/Pd] / Fe / [Co/Pd], where the thickness of Fe is varied, and presents the magnetic properties of such structures using conventional magnetometers. The fifth chapter goes beyond what is learned in the fourth chapter and utilizes polarized neutron reflectometry to study the vertical exchange coupling and reversal mechanism in patterned structures with such structure. The sixth chapter explores the dynamic properties of the patterned samples, and their reversal mechanism under microwave field. The final chapter summarizes the results and describes the prospects for future applications of these structures.
机译:图案化的磁性纳米结构由于其有趣的新兴物理特性以及从磁逻辑到生物磁功能的高密度磁数据存储中的有希望的应用而受到了广泛的研究。位图介质就是这种结构的一个例子,它是达到常规磁介质无法达到的磁密度的主要候选者。;本文研究了复杂异质结构的图案化阵列,例如交换耦合复合材料,为下一步的发展提供了可能磁记录媒体的产生。交换耦合复合材料在磁记录中显示了新的功能和性能优势,位图媒体提供了实现此类体系结构的独特功能。由于这种结构独特的共振特性,还研究了它们在自旋传递转矩记忆和微波辅助开关中的可能应用。本文共分为七章。第一章介绍了磁记录的历史,增加磁存储密度的需求以及该领域的挑战。第二章介绍了磁性的基本概念。第三章介绍了薄膜的制造方法和各种光刻技术,这些技术用于对本文研究的器件进行构图。第四章介绍了具有[Co / Pd] / Fe / [Co / Pd]结构的交换耦合系统,其中Fe的厚度发生了变化,并使用常规磁力计介绍了这种结构的磁性。第五章超越了第四章的内容,并利用极化中子反射法研究了具有这种结构的图案化结构中的垂直交换耦合和反转机理。第六章探讨了图案化样品的动力学性质及其在微波场下的逆转机理。最后一章总结了结果并描述了这些结构的未来应用前景。

著录项

  • 作者

    Eibagi, Nasim.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Electrical engineering.;Materials science.;Physics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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