课题基金 / 基金详情

Defects and Fluctuations in Low-Dimensional Condensed Matter

Defects and Fluctuations in Low-Dimensional Condensed Matter
低维凝聚态物质的缺陷和涨落
批准号:
0414290
负责人:
Herbert Fertig
金额:
$0.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-01 至 2004-10-31

项目摘要

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中文摘要
翻译
该奖项涉及凝聚态物理学的理论研究,以研究低维中的缺陷和波动。 拓扑缺陷在我们理解凝聚态中的许多物理现象中起着核心作用,特别是低维系统,由于热或量子涨落,自发秩序往往是不可能的。 这些系统的状态通常以缺陷为特征,这些缺陷可能会扩散,也可能不会扩散。 这项研究表明,研究的各种低维系统中的缺陷和/或波动发挥了重要作用,在两个维度的缺陷解约束的范例-Kosterlitz无边界过渡-不适用的情况下。 这些研究将探索一种新的过渡机制的性质和后果,当一个破磁场存在时,在低有效温度下导致缺陷的线性限制,并在较高温度下通过串扩散机制解除限制。 研究的系统包括光晶格中的玻色子、一维量子系统、双层量子霍尔系统和超导薄膜。此外,研究将集中在量子霍尔系统中的不寻常物理。 其中突出的将是双层中层间相干性的研究,最近已经显示出类似于超导性的性质。 量子霍尔液晶态,特别是条纹和气泡,也将被检查。这项工作的更广泛的影响将是开发新的方法,用于理解低维系统,可能是有用的,在广泛的凝聚态和材料系统。 此外,这项工作将与学生和博士后一起完成,涉及分析方法和数值模拟,这将是他们专业培训的一部分。 研究结果将通过出版物、研讨会和会议报告向物理学界报告,并在可能的情况下,通过大众化的文章、座谈会和公开报告向更广泛的社区报告。该奖项涉及凝聚态物理学的理论研究,以研究低维中的缺陷和波动。 在比我们正常的三维世界更小的维度上,物质的物理学往往是不同的。 例如,在固体表面上移动的电子与在固体内部移动的电子的行为不同。 本研究研究的新现象发生在低维有做这些系统中的缺陷。 这些缺陷通常与凝聚态系统的正常周期性几何结构的变化有关,这项工作的更广泛影响将是发展新的方法来理解低维系统,这些方法可能在广泛的凝聚态物质和材料系统中有用。 此外,这项工作将与学生和博士后一起完成,涉及分析方法和数值模拟,这将是他们专业培训的一部分。 研究结果将通过出版物、研讨会和会议报告向物理学界报告,并在可能的情况下,通过大众化的文章、座谈会和公开演讲向更广泛的社区报告。
英文摘要
This award involves theoretical research in condensed matter physics to study defects and fluctuations in low dimensions. Topological defects play a central role in our understanding of many physical phenomena in condensed matter, particularly low-dimensional systems where spontaneous order is often not possible due to thermal or quantum fluctuations. The state of these systems is often characterized by defects which may or may not proliferate. This research suggests studies of a variety of low -dimensional systems in which defects and/or fluctuations play an important role, for situations where the paradigm of defect unbinding in two dimensions - the Kosterlitz-Thouless transition - does not apply. The studies will explore the properties and consequences of a novel transition mechanism operative when a symmetry-breaking field is present, leading at low effective temperature to linear confinement of defects, and deconfinement via a string-proliferation mechanism at higher temperature. The systems studied will include bosons in optical lattices, one-dimensional quantum systems, bilayer quantum Hall systems, and thin superconducting films.In addition to this, the research will focus on unusual physics in quantum Hall systems. Prominent among these will be studies of interlayer coherence in bilayers, which recently have shown properties akin to superconductivity. Quantum Hall liquid crystal states, especially stripes and bubbles, will also be examined.The broader impact of this work will be to develop new methods for the understanding of low-dimensional systems that may be useful in a broad array of condensed matter and materials systems. In addition, the work will be done in conjunction with students and postdocs, and involves both analytical methods and numerical simulations that will be part of their professional training. The results will be reported to the physics community through publications, seminars, and conference presentations, and, when possible, to the broader community through popular-level articles, colloquia, and public presentations.%%% This award involves theoretical research in condensed matter physics to study defects and fluctuations in low dimensions. The physics of matter in dimensions less than our normal three-dimensional world is often different. For instance, electrons moving on surfaces of solids behave differently than electrons moving in the interior of the solid. This research studies novel phenomena occurring on low-dimension having to do with defects in these systems. These defects are usually associated with a change in the normal, periodic geometry of the condensed system.The broader impact of this work will be to develop new methods for the understanding of low-dimensional systems that may be useful in a broad array of condensed matter and materials systems. In addition, the work will be done in conjunction with students and postdocs, and involves both analytical methods and numerical simulations that will be part of their professional training. The results will be reported to the physics community through publications, seminars, and conference presentations, and, when possible, to the broader community through popular-level articles, colloquia, and public presentations.***
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会议论文
NSF-BSF: Quantum Electron States in van der Waals Platforms
  • 批准号:
    1914451
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $37.8万
  • 财政年份:
    2019
  • 负责人:
    Herbert Fertig
  • 依托单位:
Time Dependence and Textures in Low Dimensional Electron Systems
  • 批准号:
    1506263
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $34.5万
  • 财政年份:
    2016
  • 负责人:
    Herbert Fertig
  • 依托单位:
2012 Chemistry and Physics of Graphitic Carbon Materials Gordon Research Conference
  • 批准号:
    1157585
  • 项目类别:
    Standard Grant
  • 资助金额:
    $1.0万
  • 财政年份:
    2012
  • 负责人:
    Herbert Fertig
  • 依托单位:
Topological and Textured Condensed Matter Systems
  • 批准号:
    1005035
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $34.5万
  • 财政年份:
    2010
  • 负责人:
    Herbert Fertig
  • 依托单位:
海外基金