Spectroscopy of Many-Body Processes in Nanostructures
Spectroscopy of Many-Body Processes in Nanostructures
批准号:
1610427
负责人:
Tigran Shahbazyan
金额:
$18.39万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-01 至 2020-08-31
中文摘要
该奖项由材料研究部的CMMT项目和人力资源开发部的HBCU-UP项目共同资助,用于支持等离子体增强光谱学理论和计算研究的研究和教育。表面等离子体是可以在金属/介电结构界面上产生的集体电子振荡。等离子激元可以与分子和固体发生强烈的相互作用,从而显著改变其光学特性。在这样的等离子体系统中,表面等离子体与半导体纳米结构或染料分子之间的光学相互作用构成了光电、光学传感和光化学等众多应用的基础。该项目旨在模拟复杂等离子体系统的光学特性,这些特性是由系统组成部分之间的相互作用和/或能量转移过程决定的。这项研究是在杰克逊州立大学进行的,这是一所历史悠久的黑人大学,主要服务于密西西比州最大的城市社区的教育需求,并为来自传统上代表性不足的少数民族的本科生提供研究机会。杰克逊州立大学物理系的一个主要目标是增加有兴趣从事STEM学科职业的非裔美国学生的比例。该项目将通过向非洲裔美国大学生介绍纳米科学的概念和研究方法,提高他们在密西西比州的研究和教育机会。该奖项由材料研究部的CMMT项目和人力资源开发部的HBCU-UP项目共同资助,旨在支持等离子体增强光谱学理论和计算研究的研究和教育。该项目旨在研究复杂等离子体系统中的多体和协同现象,例如金属或石墨烯结构与半导体纳米结构或染料分子共轭。主要议题包括:i)金属核和染料掺杂介电壳复合纳米颗粒中的损耗补偿和超闪作用,ii)等离子体结构附近的大荧光团系中的能量传递过程,iii)杂化等离子体系统中的强激子-等离子体耦合,以及iv)石墨烯等离子体。主要的研究重点是系统组分之间的串扰在确定控制等离子体增强光谱现象的系统本征态结构中的作用。该方法包括分析方法和数值方法的结合,适用于具有许多组成部分的等离子体系统。研究结果将用于解释现有的实验数据,并对基于等离子体的传感装置的效率进行建模。这项研究是在杰克逊州立大学进行的,这是一所历史悠久的黑人大学,主要服务于密西西比州最大的城市社区的教育需求,并为来自传统上代表性不足的少数民族的本科生提供研究机会。杰克逊州立大学物理系的一个主要目标是增加有兴趣从事STEM学科职业的非裔美国学生的比例。该项目将通过向非洲裔美国大学生介绍纳米科学的概念和研究方法,提高他们在密西西比州的研究和教育机会。
英文摘要
NONTECHNICAL SUMMARYThe CMMT program of the Division of Materials Research and the HBCU-UP program of the division of Human Resource Development jointly fund this award that supports research and education in theoretical and computational studies of plasmon-enhanced optical spectroscopy. Surface plasmons are collective electronic oscillations that can be created at the interface of metal/dielectric structures. Plasmons can interact strongly with molecules and solids to significantly change their optical characteristics. In such plasmonic systems, the optical interactions between surface plasmons and semiconductor nanostructures or dye molecules form the basis for numerous applications in photovoltaics, optical sensing, and photochemistry, among others. This project aims at modeling the optical properties of complex plasmonic systems that are determined by interactions and/or energy transfer processes between the systems' constituent parts. The research is carried out at Jackson State University, which is a historically black university that primarily serves the educational needs of Mississippi's largest urban community and provides research opportunities to undergraduate students from traditionally underrepresented minority groups. A major goal of the Physics department at Jackson State University is to increase the fraction of African-American students interested in pursuing careers in STEM disciplines. This project will enhance the research and education opportunities for African-American undergraduate students in Mississippi by introducing them to concepts and methods of research in nanoscience.TECHNICAL SUMMARYThe CMMT program of the Division of Materials Research and the HBCU-UP program of the division of Human Resource Development jointly fund this award that supports research and education in theoretical and computational studies of plasmon-enhanced optical spectroscopy. The project aims at studying many-body and cooperative phenomena in complex plasmonic systems, such as metal or graphene structures conjugated with semiconductor nanostructures or dye molecules. The main topics include: i) loss compensation and spaser action in composite nanoparticles with metal core and dye-doped dielectric shell, ii) energy transfer processes in large ensembles of fluorophores situated near plasmonic structures, iii) strong exciton-plasmon coupling in hybrid plasmonic systems, and iv) graphene plasmonics. The main research focus is on the role of crosstalk between system constituents in determining the structure of system eigenstates that governs plasmon-enhanced spectroscopy phenomena. The methods include a combination of analytical and numerical approaches suitable for plasmonic systems with many constituent parts. The results will be used to explain available experimental data and to model the efficiency of plasmon-based sensing devices. The research is carried out at Jackson State University, which is a historically black university that primarily serves the educational needs of Mississippi's largest urban community and provides research opportunities to undergraduate students from traditionally underrepresented minority groups. A major goal of the Physics department at Jackson State University is to increase the fraction of African-American students interested in pursuing careers in STEM disciplines. This project will enhance the research and education opportunities for African-American undergraduate students in Mississippi by introducing them to concepts and methods of research in nanoscience.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Excellence in Research: Processes and Interactions in Hybrid Plasmonic Systems
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批准号:2000170
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项目类别:Standard Grant
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资助金额:$46.71万
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财政年份:2020
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负责人:Tigran Shahbazyan
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依托单位:
RUI: Spectroscopy of Many-Body Processes in Nanostructures
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批准号:1206975
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项目类别:Standard Grant
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资助金额:$15.01万
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财政年份:2012
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负责人:Tigran Shahbazyan
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依托单位:
RUI: Spectroscopy of Many-Body Processes in Nanostructures
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批准号:0906945
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项目类别:Standard Grant
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资助金额:$12.3万
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财政年份:2009
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负责人:Tigran Shahbazyan
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依托单位:
RUI: Spectroscopy of Many-Body Processes in Nanostructures
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批准号:0606509
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项目类别:Continuing Grant
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资助金额:$10.5万
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财政年份:2006
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负责人:Tigran Shahbazyan
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依托单位:
NUE: Integrating Nanoscale Science Education and Student Research at Jackson State University
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批准号:0532468
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项目类别:Standard Grant
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资助金额:$15.5万
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财政年份:2005
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负责人:Tigran Shahbazyan
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依托单位:
NUE: Introducing Nanoscience to Education and Student Research at Jackson State University
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批准号:0407108
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项目类别:Standard 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:Tigran Shahbazyan
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依托单位:
NUE: From Clusters to Nanoparticles: Introducing Nanoscience to Education and Student Research at Jackson State University
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批准号:0304036
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项目类别:Standard Grant
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资助金额:$10.0万
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财政年份:2003
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负责人:Tigran Shahbazyan
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依托单位:
RUI: Spectroscopy of Many-Body Processes in Semiconductor Nanostructures
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批准号:0305557
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项目类别:Continuing Grant
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资助金额:$10.8万
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财政年份:2003
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负责人:Tigran Shahbazyan
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依托单位:
国内基金
海外基金
Simulation and certification of the ground state of many-body systems on quantum simulators
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批准号:--
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项目类别:--
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资助金额:40万元
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批准年份:2020
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负责人:Abolfazl Bayat
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依托单位: