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Gas sensor array modeling and cuprate superconductivity from correlated spin disorder.

机译:气体传感器阵列建模和相关自旋失调的铜酸盐超导性。

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摘要

In part I, a kernel regression method is developed for modeling gas sensor response functions, for the purpose of identifying the composition of gas mixtures. A quantitative measure of orthogonality in sensor arrays is introduced. The method is applied to TiO2 sensor arrays exposed to O2 and CO. A sensing mechanism is analyzed by applying Wolkenstein's theory of chemisorption to the single grain TiO2 response to O2 and CO. It is found that this mechanism, in combination with Wolkenstein's theory, can adequately describe the response of granular TiO2 sensors.; In part II, a spin-dependent tight-binding model for the hole-doped cuprates is developed. The model incorporates the effects of antiferromagnetism and spin disorder. In the coherent potential approximation, the effective medium Green's function is derived and single-particle properties are obtained. When the spin disorder is correlated, an effective interaction between holes leads to dx2−y2 superconductivity. The pseudogap region of the cuprate phase diagram is interpreted within this theory.
机译:在第一部分中,开发了一种核回归方法,用于对气体传感器响应函数进行建模,以识别混合气体的成分。介绍了传感器阵列中正交性的定量度量。该方法适用于暴露于O 2 和CO的TiO 2 传感器阵列。通过将Wolkenstein化学吸附理论应用于单晶TiO 2,分析了传感机制。 对O 2 和CO的响应。发现该机制与Wolkenstein理论相结合可以充分描述颗粒状TiO 2 传感器的响应。在第二部分中,开发了一种用于孔掺杂铜酸盐的自旋相关紧密结合模型。该模型结合了反铁磁性和自旋失调的影响。在相干势近似中,得出有效介质格林函数并获得单粒子性质。当自旋失调相关时,空穴之间的有效相互作用导致d x 2 -y 2 超导。在该理论中解释了铜酸盐相图的伪间隙区域。

著录项

  • 作者

    Fulkerson, Matthew David.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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