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Structural and magnetic fluence dependence in cobalt titanate thin films synthesized by pulse laser deposition.

机译:通过脉冲激光沉积合成的钛酸钴薄膜的结构和磁通量依赖性。

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摘要

Knowledge of the fundamental structure and magnetic characteristics of dilute magnetic semiconductors (DMSs) is an essential step towards the development of spin-polarized electronics (spintronics). Recently (2001), the report of ferromagnetism in cobalt-doped anatase titania films synthesized by pulse laser deposition (PLD) elicited interest as a possible DMS oxide. Other investigations of the CoxTi1-xO2-delta material system, utilizing a myriad of deposition techniques, yielded conflicting results as to the source of magnetism and the local environment of the deposited cobalt. No complete characterization of PLD synthesized films has been reported. This dissertation quantifies the effect of laser fluence on film morphology, structure, and magnetic properties by fully characterizing CoxTi1-x O2-delta films grown under optimal PLD deposition conditions that were identified separately in prior published work.; The construction of a custom PLD system that provided repeatable laser/target interaction via a combination of fluence and target movement is addressed. A brief outline of magnetism and its relation to structure is also given.; The remainder of the dissertation details the effect of laser fluence on Co0.049Ti0.951O2-delta and Co 0.038Ti0.962O2-delta films. Film structure, morphology, and magnetic properties were determined for illumination conditions corresponding to laser fluences varying from 0.57 to 1.37 J/cm2. The local cobalt environment is strongly correlated with laser fluence. Cobalt in 4.9% concentration films grown with a laser fluence between 0.7 and 0.93 J/cm2 were octahedrally coordinated, as were 3.8% films grown with a fluence less than 0.93 J/cm2. Departure of the laser fluence from these ranges results in a multitude of cobalt environments in the films. The film magnetization is observed to be a function of laser fluence with a maximum moment of ∼3.19 muB per cobalt atom occurring at 0.93 J/cm2 in the 4.9% films and ∼1.9 muB per cobalt atom at 0.57 J/cm2 in the 3.8% films. There is no evidence of cobalt segregation and subsequent formation of metallic cobalt in the high moment films. A departure in laser fluence from the maximum moment conditions results in a drop in moment to ∼1 muB.; An appendix detailing previous work that investigated iridium as an oxidation resistant capping layer is also included.
机译:了解稀磁半导体(DMS)的基本结构和磁特性是自旋极化电子学(spintronics)发展的重要一步。最近(2001年),通过脉冲激光沉积(PLD)合成的钴掺杂的锐钛矿型二氧化钛薄膜中的铁磁性的报道引起了人们对可能的DMS氧化物的兴趣。利用无数沉积技术对CoxTi1-xO2-δ材料系统进行的其他研究,在磁源和沉积钴的局部环境方面产生了矛盾的结果。没有报道PLD合成膜的完整表征。本文通过充分表征在最佳PLD沉积条件下生长的CoxTi1-xO2-δ薄膜的特性,量化了激光能量密度对薄膜形态,结构和磁性的影响,该薄膜在先前发表的工作中已分别确定。解决了定制PLD系统的构建,该系统通过通量和目标运动的组合提供了可重复的激光/目标交互作用。还简要介绍了磁性及其与结构的关系。本文的其余部分详细介绍了激光能量密度对Co0.049Ti0.951O2-δ和Co0.038Ti0.962O2-δ膜的影响。确定了对应于激光能量密度在0.57至1.37 J / cm2之间变化的照明条件的膜结构,形态和磁性能。本地钴环境与激光能量密度密切相关。激光注量在0.7和0.93 J / cm2之间生长的4.9%浓度薄膜中的钴被八面体配位,注量量小于0.93 J / cm2的3.8%薄膜中的钴被八面体配位。激光能量密度偏离这些范围会导致薄膜中存在许多钴环境。观察到薄膜磁化强度是激光通量的函数,在4.9%的薄膜中,最大动量矩为〜3.19μB/钴原子,在0.93 J / cm2时出现,最大矩为〜1.9μB/钴原子,在3.8%时为0.57 J / cm2电影。没有证据表明高矩薄膜中钴偏析并随后形成金属钴。激光能量密度与最大力矩条件的偏离导致力矩降低至约1μB。还包括一个附录,该附录详细介绍了研究铱作为抗氧化覆盖层的先前工作。

著录项

  • 作者

    Prisbrey, Shon Thomas.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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