Plasmonic devices for controlling light at the nanoscale
Plasmonic devices for controlling light at the nanoscale
批准号:
1102301
负责人:
Georgios Veronis
金额:
$24.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-06-01 至 2016-05-31
中文摘要
该计划的目标是开发新的等离子体结构和器件,通过激发亚波长等离子体模在纳米尺度上操纵光并增强光与物质的相互作用,用于传感、开关和光伏等器件应用。其智能优势是通过探索纳米级等离子体结构和器件来增强非线性光学效应、全光吸收开关、超紧凑传感器和等离子体增强薄膜光伏太阳能电池,极大地促进了纳米等离子体技术的发展。拟议的研究具有潜在的变革性,因为该计划的结果可能为设备应用带来新的机会,这将代表着集成光学、光学信息处理和可再生能源方面的重要突破。更广泛的影响是光子学和工程学的根本性突破,这是一个深刻影响人类生活质量的领域。该项目还将为两名研究生提供绝佳的培训机会。此外,作为外展和教育工作的一部分,将推出一门新的纳米光子学课程,其中将使用数字代码加深学生?了解纳米光子器件的基本物理原理。还将特别关注将本科生纳入研究计划,以及与当地社区的接触,以及招募少数族裔研究生参与这一计划。
英文摘要
The objective of this program is to develop new plasmonic structures and devices for manipulating light and enhancing light-matter interactions at the nanoscale through the excitation of subwavelength plasmonic modes for device applications in sensing, switching, and photovoltaics. The intellectual merit is to greatly advance the state of the art of nanoplasmonics by exploring nanoscale plasmonic structures and devices for enhancement of nonlinear optical effects, all-optical absorption switches, ultra-compact sensors, and plasmon-enhanced thin-film photovoltaic solar cells. The proposed research is potentially transformative, since the results of the program may lead to new opportunities for device applications, which will represent important breakthroughs in integrated optics, optical information processing, and renewable energy sources. The broader impacts are fundamental breakthroughs in photonics science and engineering, a field which profoundly influences the quality of human life. This program will also provide excellent training opportunities for two graduate students. In addition, as part of the efforts on outreach and education, a new course on nanophotonics will be introduced in which numerical codes will be used to deepen the students? understanding of the basic physics of nanophotonic devices. Special focus will also be placed on incorporating undergraduate students into the research program, as well as on outreach to the local communities, and on recruiting minority graduate students to work on this program.
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会议论文
CAREER: Physics-based modeling techniques to enable high-performance nanoplasmonic devices
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批准号:1254934
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项目类别:Standard Grant
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资助金额:$40.0万
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财政年份:2013
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负责人:Georgios Veronis
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依托单位:
国内基金
海外基金
兼捕减少装置(Bycatch Reduction Devices, BRD)对拖网网囊系统水动力及渔获性能的调控机制
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批准号:32373187
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项目类别:面上项目
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资助金额:50万元
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批准年份:2023
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负责人:唐浩
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依托单位: