GOALI: Dynamically Tunable Low-Loss Active Metamaterials For Wireless Applications
GOALI: Dynamically Tunable Low-Loss Active Metamaterials For Wireless Applications
批准号:
1158644
负责人:
Steven Anlage
金额:
$47.5万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-01 至 2015-07-31
中文摘要
该项目的总体目标是开发快速(~纳秒)宽带可调谐、低损耗、物理尺寸小的超材料射频前端元件,与工业上正在开发的数字射频收发信机概念兼容,用于各种商业和军事应用。我们将专注于以超导元件为基础的新型超材料,以形成极低的插入损耗、物理和电气上的小尺寸、高度可调的结构,用于下一代射频电子学。这些超材料将使我们能够提高性能,同时减小工作在宽带、多频段的天线的尺寸和特征,并允许动态实时调谐。智力价值这项工作将首次将约瑟夫森效应纳入超材料,导致超材料的激进新应用的发展,并测试几个高风险的理论预测。更广泛的影响拟议的工作调查和促进超材料在射频和微波行业的应用。这些发展将通过创造高科技就业机会、改善无线通信并对生活质量产生积极影响,对社会产生直接和可衡量的价值。非政府组织有扩大任职人数不足群体参与的历史(目前研究小组有50%是任职人数不足群体的成员),并参与了许多外联活动。这些活动将创造新的伙伴关系、合作和设施,将改变超导超材料领域的面貌。结果将通过出版物、讲座和在国际会议上张贴的海报、一个研究网站以及继续由国际和平协会和学生开展的广泛的外联活动来传播。
英文摘要
ObjectiveThe overall goal of this project is to develop fast (~nanosecond) tunable-over-a-wide-band, low-loss, physically small, metamaterial-based RF front-end elements compatible with Digital-RF transceiver concept being developed in industry for a variety of commercial and military applications. We will focus on novel metamaterials based on superconductor elements to form extremely low insertion loss, physically and electrically small, highly tunable structures for the next generation of RF electronics. These metamaterials will allow us to increase performance while decreasing size and signature of antennas operating over wide bands, multibands and allowing dynamic real-time tuning. Intellectual MeritThe work will include the Josephson effect into metamaterials for the first time, leading to development of radical new applications of metamaterials and test several high-risk theoretical predictions. Broader ImpactsThe proposed work investigates and promotes applications of metamaterials for the RF and microwave industry. These developments will be of direct and measurable value to society through the generation of high-tech jobs, improvement of wireless communications, and a positive impact on quality of life. The PI has a history of broadening the participation of underrepresented groups (currently 50% of the research group are members of underrepresented groups), and is involved in numerous outreach activities. These activities will create new partnerships, collaborations, and facilities that will alter the landscape of the superconducting metamaterials field. The results will be disseminated through publications, talks and posters at international conferences, a research web site, and continuation of the extensive outreach activities by the PI and students.
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财政年份:1998
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负责人:Steven Anlage
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依托单位:
NSF-NATO POSTDOCTORAL FELLOWSHIPS VISITING SCIENTIST
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Imaging Microwave Frequency Currents in Operating Devices on Sub-Nanosecond Time Scales and Micron Length Scales
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财政年份:1996
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负责人:Steven Anlage
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依托单位:
Electrodynamics of Proximity-Coupled and Cuprate Superconductors
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资助金额:$17.9万
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财政年份:1996
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Electrodynamics of Proximity Coupled Superconductor/Normal Metal Bilayers and Multilayers
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项目类别:Continuing Grant
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资助金额:$15.0万
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财政年份:1992
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负责人:Steven Anlage
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依托单位:
Acquisition of a UHV Sputtering System for Superconductor Research.
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批准号:9214579
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项目类别:Standard Grant
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资助金额:$15.0万
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财政年份:1992
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负责人:Steven Anlage
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依托单位:
NSF Young Investigator Award
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批准号:9258183
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项目类别:Continuing Grant
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资助金额:$28.5万
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财政年份:1992
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负责人:Steven Anlage
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依托单位:
海外基金