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Low temperature scanning tunneling microscopy and spectroscopy: A study on charge density waves and vortex dynamics.

机译:低温扫描隧道显微镜和光谱:电荷密度波和涡旋动力学的研究。

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摘要

In this thesis I describe the development of a low temperature scanning tunneling microscope system (LTSTM) and its application to the study of charge density waves and vortex dynamics. All the measurements are taken on different 2H-NbSe2 samples with or without impurities to examine the interesting coexistence of the charge density wave (CDW) phase and superconductive phase in the sample at 4.2 K. After creating a structural defect using a voltage pulse, we observed a new type of CDW in the vicinity of the defect. With a 13x13 reconstruction, the new CDW differs in many ways from the naturally occurring 3 x 3 CDW in 2H-NbSe2. This suggests a possible local phase transition induced by the tip-sample interaction. As a low-Tc type II superconductor, 2H-NbSe 2 is also well-known for the formation of a vortex phase in magnetic fields. Although it was intensely studied for decades, many questions concerning the vortex system still remain unanswered. One of the most important and intriguing questions is the response of the system to a driving force well below the critical value fc. Due to an unexpected defect in our magnet, we are able to utilize a slowly decaying magnetic field with a rate at ∼ nT/s to observe the dynamic creep motion of the vortex system which can be described as a Bragg glass. I will also present a study of the statics of this glass phase and demonstrate the use of LTSTM as a powerful imaging technique in the area of vortex physics.
机译:在本文中,我将介绍低温扫描隧道显微镜系统(LTSTM)的开发及其在电荷密度波和涡旋动力学研究中的应用。所有测量均在带有或不带有杂质的不同2H-NbSe2样品上进行,以检验在4.2 K下样品中电荷密度波(CDW)相和超导相的有趣共存。在使用电压脉冲产生结构缺陷之后,我们在缺陷附近观察到一种新型CDW。通过13x13重建,新的CDW在许多方面不同于2H-NbSe2中自然产生的3 x 3 CDW。这表明由尖端-样品相互作用引起的可能的局部相变。作为低Tc II型超导体,2H-NbSe 2也因在磁场中形成涡旋相而闻名。尽管对其进行了数十年的深入研究,但有关涡旋系统的许多问题仍未得到解答。最重要和有趣的问题之一是系统对远低于临界值fc的驱动力的响应。由于我们的磁体存在意外缺陷,因此我们能够以〜nT / s的速率利用一个缓慢衰减的磁场来观察涡流系统的动态蠕变运动,该运动可称为布拉格玻璃。我还将介绍对这种玻璃相的静力学的研究,并论证将LTSTM用作涡旋物理学领域中强大的成像技术。

著录项

  • 作者

    Wang, Hui.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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