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The US National Nanotechnology Infrastructure Network and Support of Photonics Research and Development

机译:美国国家纳米技术基础设施网络和光子研究与发展的支持

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A major challenge in science and engineering research and development at the nano-scale, and particularly for photonics, is the availability of infrastructure that allows easy and quick implementation of structures, devices, or more complex systems necessary for making rigorous measurements, other exploratory directions of interest, and building of assemblies that utilize techniques from multiple disciplines. The experiments connect across length scales - nanometers and up, employ a variety of materials and techniques of assembly and patterning, and require a complex mix of knowledge that are derived from other research areas and tools that are demanding in skills and are hard to access. The National Nanotechnology Infrastructure Network (NNIN; www.nnin.org) is funded by the United States National Science Foundation and is a partnership of open shared facilities across the country that enables the national and international community to pursue research and technology development that can benefit from nanotechnology. The NNIN provides easy hands-on access to external users, remote usage, staff support, low-cost usage, knowledge infrastructure, and brings together an extensive coordinated array of instruments for fabrication, synthesis, and characterization together with other infrastructure resources. Particularly relevant to photonics is the ability to combine optical quality materials and fabrication techniques with ultra-sensitive characterization and application to biology, fiuidics, and problems of interest in optical and electronic communication. Integration to the smallest length scales through synthesis and electron-beam lithography, growth and deposition of a variety materials with controlled properties, patterning of complex shapes in the three-dimensions, connecting such structures, characterization, and the ability to achieve this quickly and at low cost is essential to successful university research and industrial innovation. NNIN tool resources that span focused-ion beam, electron microscopy, spectroscopic techniques, etc. for characterization; synthesis, growth, deposition, etc. for assembling; ultra-high resolution lithography, etching, etc. for patterning; all enable the researcher to focus on their own research interest by leveraging the NNIN infrastructure. Access of NNIN is designed for ease of use — quick access (typically, 2 weeks), strong support (direct staff and web-based interactions), and remote execution for simple projects.
机译:科学和工程研究和纳米规模的主要挑战,特别是对光子学,是基础设施的可用性,可以轻松快速地实现制作严格测量,其他探索方向所需的结构,设备或更复杂的系统感兴趣的,以及利用多学科技术的组装构建。该实验在长度尺度和上方连接,采用各种材料和组装和图案化的材料和技术,并且需要一种复杂的知识组合,这些知识源自其他研究领域和工具,这些研究领域和工具难以提出技能,并且很难访问。国家纳米技术基础设施网络(NNIN; www.nin.org)由美国国家科学基金资助,是全国各地开放共用设施的伙伴关系,使国家和国际社会能够受益的研究和技术发展从纳米技术。 NNIN提供了容易的动手访问外部用户,远程使用,员工支持,低成本使用,知识基础设施,以及带来广泛的协调仪器,用于制造,合成和表征以及其他基础架构资源。特别是与光子学相关的能够将光学质量材料和制造技术与超敏感的表征和应用与光学和电子通信感兴趣的问题相结合。通过合成和电子束光刻的整合,通过合成和电子束光刻,生长和沉积具有受控性能的各种材料,三维复合形状的图案化,连接这种结构,表征和快速实现这一目标的能力低成本对成功的大学研究和工业创新至关重要。 NNIN工具资源跨越聚焦离子束,电子显微镜,光谱技术等进行表征;组装的合成,生长,沉积等;超高分辨率光刻,蚀刻等进行图案化;所有人都使研究人员通过利用NNIN基础设施来专注于自己的研究兴趣。 NNIN的访问是为易于使用而设计的 - 快速访问(通常为2周),强大的支持(直接员工和基于Web的交互),以及简单项目的远程执行。

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