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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Optical and plasmonic spectroscopy with cantilever shaped materials
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Optical and plasmonic spectroscopy with cantilever shaped materials

机译:悬臂形材料的光学和等离子体光谱

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摘要

Micro- and nanocantilevers, which have traditionally played a vital role in the development of force microscopy, and more recently a special role in biological, chemical and physical sensing and detection, have received comparatively little attention in optical spectroscopy. We present an investigation of the optical response of microcantilevers towards their utilization in integrated spectrometers in a broad part of the spectrum. By discussing the overall actuation mechanism we describe how surface modes may effectively contribute to the final signal. Using Fourier transform infrared (FTIR) spectroscopy, a series of multilayered microcantilevers are characterized for their spectral response in the range from 7800 to 400 cm ~(-1). Transmission FTIR and FTIR photothermal spectroscopy are carried out using polystyrene with well-established infrared spectra.
机译:微型悬臂和纳米悬臂传统上在力显微镜的发展中起着至关重要的作用,最近在生物学,化学和物理感测和检测中起着特殊的作用,而在光谱学中却很少受到关注。我们目前对微悬臂梁在集成光谱仪中的广泛应用中的光学响应的​​光学研究。通过讨论整个致动机制,我们描述了表面模式如何有效地对最终信号作出贡献。使用傅立叶变换红外(FTIR)光谱,表征了一系列多层微悬臂梁,其光谱响应范围为7800至400 cm〜(-1)。使用具有良好建立的红外光谱的聚苯乙烯进行透射FTIR和FTIR光热光谱。

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