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Optical and electrical transport properties of semicontinuous metallic films.

机译:半连续金属膜的光电传输特性。

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Semicontinuous metallic films posses unique optical and electrical transport properties. The strong localization and large enhancement of electric fields demonstrated by these films make them interesting in terms of a fundamental understanding of these phenomena as well as potentially useful in a large variety of applications. The field distributions and electrical transport properties of these films depend on the structural geometry and morphology of the samples and therefore also on the metal concentration, with distinctive properties near the percolation threshold where an insulator-to-metal transition occurs. This dissertation focuses on an experimental investigation of the optical, electrical transport and structural properties of semicontinuous silver-glass composites near the percolation threshold. Particular emphasis is placed on the optical enhancement observed in these films in terms of their near-field optical intensity distribution. The samples were synthesized by pulsed laser ablation and the percolation threshold was identified in terms of structural properties using transmission electron microscopy as well as electrical resistivity and optical transmission through in-situ measurements during sample synthesis. The optical intensity distributions were measured using near-field optical microscopy (NSOM) and found to depend strongly on metal concentration and wavelength. The degree of localization was found to increase as metal concentrations was varied above and below the percolation threshold and also found to increase with increase in wavelength. Comparisons of the experimental results with theoretical calculations of the local field distributions obtained using the block elimination method showed good agreement.; In addition, composite systems involving the coupling of enhancement from semicontinuous films with two other resonance phenomena are also studied viz. semicontinuous films (1) with random subwavelength apertures and (2) deposited on spherical microcavities. Extremely large transmission was obtained in the former system and a large concentration of fields near the subwavelength apertures was observed by NSOM. Localization effects due to the presence of the semicontinuous coating on the dielectric microcavities were observed, although evidence of mutual reinforcement of the enhancing abilities of the combined film-microcavity system was not conclusively obtained.
机译:半连续金属膜具有独特的光学和电传输特性。这些薄膜所表现出的强大的电场定位能力和强大的电场作用使它们从对这些现象的基本理解上变得很有趣,并且可能在多种应用中有用。这些薄膜的场分布和电传输特性取决于样品的结构几何形状和形态,因此也取决于金属浓度,其独特的特性接近发生绝缘体到金属过渡的渗流阈值。本论文的重点是在接近渗流阈值的条件下对半连续银玻璃复合材料的光学,电传输和结构性质进行实验研究。就这些膜的近场光强度分布而言,特别强调的是在这些膜中观察到的光学增强。通过脉冲激光烧蚀合成样品,并使用透射电子显微镜通过结构特性以及在样品合成过程中通过就地测量来确定电阻率和光学透射率,从而确定渗滤阈值。使用近场光学显微镜(NSOM)测量了光强度分布,发现其强烈依赖于金属浓度和波长。随着金属浓度在渗透阈值之上和之下变化,局部化程度增加,并且随着波长的增加而增加。实验结果与采用块消除法得到的局部场分布的理论计算结果进行了比较,结果吻合良好。此外,还研究了涉及半连续膜增强与其他两种共振现象耦合的复合系统。半连续膜(1)具有随机的亚波长孔径,(2)沉积在球形微腔上。在以前的系统中获得了极大的透射,并且通过NSOM观察到亚波长孔径附近的电场集中。观察到由于在介电微腔上存在半连续涂层而引起的局部化作用,尽管没有最终获得膜-微腔组合系统增强能力的相互增强的证据。

著录项

  • 作者

    Seal, Katyayani.;

  • 作者单位

    New Mexico State University.;

  • 授予单位 New Mexico State University.;
  • 学科 Physics Condensed Matter.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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