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Intrinsically-Nonlinear Broadband Nanoresonator for Ultrahighly Sensitive Sensing of Energy Transfers

Intrinsically-Nonlinear Broadband Nanoresonator for Ultrahighly Sensitive Sensing of Energy Transfers
用于能量传输超高灵敏传感的本质非线性宽带纳米谐振器
批准号:
1000615
负责人:
Min-Feng Yu
金额:
$40.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-01 至 2014-08-31

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中文摘要
翻译
本研究项目旨在推进微/纳米谐振器开发的新概念,该概念涉及替代线性谐振系统中的几何非线性,以实现本质非线性宽带谐振器。 这种谐振器没有优选的谐振频率,并且在任何振荡幅度和整个频谱上都是非线性的。 尺寸减小到微米/纳米级,显著降低了整个系统的能量;这反过来又使系统对即使是最轻微的能量转移也很敏感。 先进的工具和纳米材料将用于制造非线性纳米谐振器,并将实施一个综合的实验和理论方法来研究非线性动力学和系统不稳定性。 特别是将重点放在表征和分析这种非线性纳米谐振器的能量转移的灵敏度,希望将这一新的概念转化为可在实际环境中操作的高灵敏度纳米传感器的发展,从而拓宽了目前的研究纳米机械谐振,这是主要在线性动力学制度,以强非线性动力学制度。 因此,这项研究不仅将为一个科学上非常有趣的话题提供新的基本理解,而且还将导致一类新的传感应用纳米器件的开发。 所包括的教育项目将进一步扩大该项目的影响,为学生和公众提供有吸引力的教育材料,并为学生,特别是少数民族本科生和研究生提供实践培训机会。
英文摘要
This research project aims to advance a new concept in micro-/nano-resonator development that involves the substitution of a geometric nonlinearity in an otherwise linear resonant system to realize an intrinsically nonlinear broadband resonator. Such a resonator has no preferential resonant frequency and is nonlinear at any oscillation amplitude and across the whole frequency spectrum. The reduced size, down to micro-/nano-scale, significantly reduces the overall system energy; this in turn makes the system sensitive to even the slightest amount of energy transfer. Advanced tools and nanomaterials will be used to fabricate the nonlinear nanoresonator, and an integrated experimental and theoretical approach will be implemented to study the nonlinear dynamics and system instability. Particular focus will be placed onto the characterization and analysis of the sensitivity of this nonlinear nanoresonator to energy transfers in hope to translate this new concept into development of ultrahigh sensitivity nano-sensors that can be operated in practical environments.This research thus broadens the current research on nanoscale mechanical resonance, which is mostly in the linear dynamics regime, to the strongly nonlinear dynamics regime. Therefore, the research will not only provide new fundamental understanding of a scientifically highly interesting topic, but also lead to the development of a new class of nano-devices for sensing applications. The educational projects included will further broaden the impact of this project by providing appealing materials for the education of students and the public and by offering hands-on training opportunities for students, especially minority undergraduate and graduate students.
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Direct-Write Nanomanufacturing of High Density and High Aspect Ratio Metal Electrode Arrays
  • 批准号:
    1516097
  • 项目类别:
    Standard Grant
  • 资助金额:
    $18.48万
  • 财政年份:
    2014
  • 负责人:
    Min-Feng Yu
  • 依托单位:
Direct-Write Nanomanufacturing of High Density and High Aspect Ratio Metal Electrode Arrays
Nanofluidics of Surface-Driven Liquid Flow and Its Application for Nanofabrication
Scale Effect in Nanoscale Mechanical Resonance System
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