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CAREER: Tunneling into the Edge of the Quantum Hall Fluid

CAREER: Tunneling into the Edge of the Quantum Hall Fluid
职业生涯:深入量子霍尔流体的边缘
批准号:
0093217
负责人:
Michael Geller
金额:
$27.5万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-07-01 至 2007-06-30

项目摘要

项目成果

Michael Geller的其他基金

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中文摘要
翻译
这一职业奖支持研究开发强关联电子系统中态的隧穿密度的新理论。这项研究的一个主要目的是调和隧道进入量子霍尔边缘的理论和实验数据。PI还将研究隧道传输到具有光滑边缘的分数量子霍尔效应系统的相关问题。这项研究的教育部分包括创建一个勤工俭学计划,让物理专业的本科生有效地接触到理论材料研究。被整合到PI的研究中的精心设计的项目提供了一对一和同行互动的工具。这个职业奖支持凝聚态物理的理论研究和教育。PI将使用先进的理论方法来研究量子霍尔系统中出现的奇特的非费米液态的隧穿。这项研究可能有助于为未来的纳米电子器件奠定理论基础。这项研究的教育部分包括创建一个勤工俭学计划,让物理专业的本科生有效地接触到理论材料研究。精心设计的项目被整合到PI的研究中,为一对一和同行互动提供了一种工具。
英文摘要
This CAREER award supports research to develop a new theory of the tunneling density of states in strongly correlated electron systems. One thrust of the research aims at reconciling theory and data from experiments on tunneling into quantum Hall edges. The PI will also work on the related problem of tunneling into fractional quantum Hall effect systems with smooth edges. The educational component of the research involves creating a work-study program to effectively expose undergraduate physics majors to theoretical materials research. Well-conceived projects that are integrated into the PI's research provide vehicles for one-on-one and peer interaction.This CAREER award supports theoretical research and education in condensed matter physics. The PI will use advanced theoretical methods to study tunneling into exotic non-Fermi liquid states that occur in quantum Hall systems. The research may contribute to the theoretical foundation underlying future nanoelectronic devices. The educational component of the research involves creating a work-study program to effectively expose undergraduate physics majors to theoretical materials research. Well conceived projects that are integrated into the PI's research provide a vehicle for one-on-one and peer interaction.
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会议论文
CDI-Type II: Quantum Cyberinfrastructure for the Simulation of Complex Quantum Systems
NIRT: Theoretical Nanomechanics: From Cells to Solids
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