Emergent Behavior of Microscopic Model Systems
Emergent Behavior of Microscopic Model Systems
批准号:
1265593
负责人:
Steven Kivelson
金额:
$42.0万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-15 至 2016-12-31
中文摘要
技术总结该奖项支持理论研究和教育,以解决有关相关电子流体紧急性质的长期存在的基本问题,这些问题使用理论物理的良好控制方法。PI将通过仔细分析在晶格尺度上定义的相互作用电子的简化模型的行为来研究电子系统的性质。PI将探索相互作用的电子系统的一般性质,并试图通过包括感兴趣材料的电子结构的显著特征来深入了解强相关电子系统的材料特定特征。PI将采取三管齐下的方法:1.PI将研究弱耦合极限中相互作用电子的简化模型的行为,在那里可以进行受控的微扰重整化群计算,并且可以获得渐近精确的结果。为了拓宽这些方法所能接触到的物理学的范围,我们将研究微调的电子结构。这相当于研究量子多临界点附近的相和相变的性质。在量子临界点附近,电子性质通常可以用量子场论来描述。量子场论在关联电子系统中的一个特别成功的应用是使用Chern-Simons Landau Ginzberg理论来描述量子霍尔系统。这种方法意味着量子霍尔系统的性质和超导体的性质之间有着深刻的相似之处。PI将研究Chern-Simons Landau Ginzberg理论的合理性和适用范围,并进一步探索超导体和量子霍尔系统之间隐含的类比的后果。某些相关材料的性质的具体方面可以根据捕捉其局部电子结构的一些基本特征的模型来处理。其目标主要是深入了解一种或另一种实验上有趣的材料的物理性质。最新发现的Cs3C60的反铁磁绝缘态就是一个很好的例子;因为它是绝缘态,所以可以通过展开Mott绝缘态来研究它,在Mott绝缘态中,每个C60分子上的电子数由有效的Hubbard相互作用固定。了解哪些进一步的相互作用在这个强关联极限中占主导地位,以及它们如何确定有序状态的性质,可能有助于揭示导致这种材料在压力下和更广泛的超导材料A3C60家族中超导电性的相互作用。其中A是碱金属中的任何一种。了解相关电子流体的性质可能会导致开发新材料属性的能力,以开发新的设备和技术,这些新设备和技术从发生在高度相关的电子流体中的新相和相竞争中获得其工作原理。非技术总结该奖项支持研究和教育,旨在促进对具有相互作用的电子的材料的理解,从而产生具有有趣和不寻常性质的电子物质的新状态。这项研究的主要目的是深入了解在强相互作用材料中出现的电子物质状态的性质。PI将使用材料中电子的简化模型来检查从受控理论方法获得的解之间的关系,这些方法假设电子与其他各种方法获得的结果实际上是弱相互作用的。超导性是物质的一种涌现状态,其特征是能够在没有电阻或能量损失的情况下导电。PI将探索超导体的基本物理和被称为量子霍尔效应的看似非常不同的物质状态之间的一种有趣的联系。当存在于人工分层半导体材料中的二维电子层暴露在垂直磁场中时,量子霍尔效应就会出现。PI的目的是利用超导知识来获得对量子霍尔效应的基本物理的新见解。PI还将研究由元素铯和含有60个原子的碳分子组成的材料中出现的超导状态,该分子在压力下表现出超导电性。实验揭示了与高温超导体和其他具有强相互作用电子的材料的性质相似的性质。PI对这种最近发现的超导体的研究可能有助于深入了解高温超导体中的超导性质。了解相关电子流体的性质可能导致开发新的材料属性来开发新的器件和技术,这些新设备和技术的工作原理来自于发生在高度相关的电子流体中的新相和相竞争。
英文摘要
TECHNICAL SUMMARYThis award supports theoretical research and education to address long-standing fundamental problems concerning the emergent properties of correlated electron fluids using well-controlled methods of theoretical physics. The PI will investigate properties of electronic systems through a careful analysis of the behavior of simplified models of interacting electrons defined at the lattice scale. The PI will explore generic properties of interacting electronic systems and also attempt to gain insights into material specific features of strongly correlated electronic systems through the inclusion of salient features of the electronic structure of interesting materials. The PI will pursue a three-pronged approach:1. The PI will study the behavior of simplified models of interacting electrons in the weak-coupling limit where controlled, perturbative renormalization group calculations are possible and asymptotically exact results can be obtained. In order to broaden the scope of the physics accessible by these methods, fine-tuned electronic structures will be investigated. This amounts to studying the properties of the phases and phase transitions in the vicinity of quantum multicritical point.2. Near a quantum critical point, electronic properties can often be described by a quantum field theory. A particularly successful use of quantum field theory in correlated electron systems has been the use of Chern-Simons Landau Ginzberg theory to describe quantum Hall systems. This approach implies a profound analogy between the properties of quantum Hall systems and the properties of superconductors. The PI will study the justification and limits of applicability of the Chern-Simons Landau Ginzberg theory, and further explore the consequences of the implied analogy between superconductors and quantum Hall systems.3. Specific aspects of the properties of certain correlated materials can be addressed in terms of models that capture some essential feature of their local electronic structure. The goal is mainly to gain insights into the physics of one experimentally interesting material or another. A good example is provided by the newly discovered antiferromagnetic insulating state of Cs3C60; because it is insulating, it can be studied by expanding about a Mott insulating state in which the number of electrons on each C60 molecule is fixed by the effective Hubbard interaction. Understanding which further interactions dominate in this strongly correlated limit, and how they determine the nature of the ordered states may shed light on the interactions that give rise to superconductivity of this material under pressure, and in the broader family of superconducting materials A3C60, where A is any of a number of alkali metals.Understanding the properties of correlated electron fluids may lead to the ability to exploit novel materials properties to develop new devices and technologies that derive their operating principles from the novel phases and phase competitions that occur in highly correlated electron fluids.NON TECHNICAL SUMMARYThis award supports research and education with an aim to advance understanding of materials with electrons that interact strongly with each other giving rise to new states of electronic matter with interesting and unusual properties. The broad thrust of this research is to gain insights into the nature of the states of electronic matter that emerge in strongly interacting materials. The PI will use simplified models for electrons in materials to examine the relationship between solutions obtained from controlled theoretical methods that assume that electrons are effectively weakly interacting to results obtained by various other methods. Superconductivity is one kind of emergent state of matter which is characterized by the ability of conduct electricity without resistance or loss of energy. The PI will explore an interesting connection between the fundamental physics of superconductors and the seemingly very different state of matter known as the quantum Hall effect. The quantum Hall effect arises when a two-dimensional layer of electrons, which can exist in an artificially layered semiconductor material, is exposed to a perpendicular magnetic field. The PI aims to exploit knowledge of superconductivity to gain new insights into the fundamental physics of the quantum Hall effect.The PI will also investigate the superconducting state that emerges in a material composed of the element cesium and a molecule of carbon containing 60 atoms which exhibits superconductivity under pressure. Experiments reveal properties that are qualitatively similar to those of the high temperature superconductors and other materials with strongly interacting electrons. The PI's study of this recently discovered superconductor may lead to insights into the nature of superconductivity in the high temperature superconductors.Understanding the properties of correlated electron fluids may lead to the ability to exploit novel materials properties to develop new devices and technologies that derive their operating principles from the novel phases and phase competitions that occur in highly correlated electron fluids.
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会议论文
Conference: Aspen Winter Conference: Disorder and Quantum Phases of Matter
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批准号:2409357
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项目类别:Standard Grant
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资助金额:$1.0万
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财政年份:2023
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负责人:Steven Kivelson
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依托单位:
NSF-BSF: Theory of Quantum Materials
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批准号:2310312
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项目类别:Continuing Grant
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资助金额:$65.0万
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财政年份:2023
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负责人:Steven Kivelson
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依托单位:
NSF/DMR-BSF: Theory of Quantum Materials
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批准号:2000987
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项目类别:Standard Grant
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资助金额:$42.0万
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财政年份:2020
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负责人:Steven Kivelson
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依托单位:
Theory of order and fluctuations in quantum materials
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批准号:1608055
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项目类别:Continuing Grant
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资助金额:$39.0万
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财政年份:2016
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负责人:Steven Kivelson
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依托单位:
Emergent Properties of Highly Correlated Electronic Systems
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批准号:0758356
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项目类别:Continuing Grant
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资助金额:$42.0万
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财政年份:2008
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负责人:Steven Kivelson
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依托单位:
Theory of Highly Correlated Electronic Systems
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批准号:0531196
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项目类别:Continuing Grant
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资助金额:$0.0万
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财政年份:2004
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负责人:Steven Kivelson
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依托单位:
Theory of Highly Correlated Electronic Systems
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批准号:0421960
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项目类别:Continuing Grant
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资助金额:$0.0万
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财政年份:2004
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负责人:Steven Kivelson
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依托单位:
Theory of Locally Crystalline Liquids
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批准号:0110329
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项目类别:Continuing Grant
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资助金额:$34.8万
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财政年份:2001
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负责人:Steven Kivelson
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依托单位:
Quantum Theory of Strongly Interacting Electrons
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批准号:9808685
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项目类别:Continuing Grant
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资助金额:$33.0万
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财政年份:1998
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负责人:Steven Kivelson
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依托单位:
Low Energy Implications of Strong Electronic Correlations
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批准号:9312606
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项目类别:Continuing Grant
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资助金额:$42.6万
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财政年份:1993
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负责人:Steven Kivelson
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依托单位:
Novel Collective Properties of Quantum Systems
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批准号:9011803
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项目类别:Continuing Grant
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资助金额:$20.1万
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财政年份:1990
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负责人:Steven Kivelson
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依托单位:
Quantum Theory of Low-Dimensional Condensed Matter
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批准号:9005385
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项目类别:Standard Grant
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资助金额:$3.87万
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财政年份:1989
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负责人:Steven Kivelson
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依托单位:
Quantum Theory of Low-Dimensional Condensed Matter (Materials Research)
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批准号:8706250
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项目类别:Continuing Grant
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资助金额:$7.34万
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财政年份:1987
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负责人:Steven Kivelson
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依托单位:
Theory of Quasi-One Dimensional Conductors (Materials Research)
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批准号:8318051
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项目类别:Continuing Grant
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资助金额:$9.34万
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财政年份:1984
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负责人:Steven Kivelson
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依托单位:
国内基金
海外基金
greenwashing behavior in China:Basedon an integrated view of reconfiguration of environmental authority and decoupling logic
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项目类别:外国学者研究基金项目
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批准年份:2024
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负责人:YU BYUNGJUN
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依托单位:
Incentive and governance schenism study of corporate green washing behavior in China: Based on an integiated view of econfiguration of environmental authority and decoupling logic
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项目类别:外国学者研究基金项目
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批准年份:2024
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负责人:YU BYUNGJUN
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