Overview of novel measurement and identification methodologies for advancing

S. Hadjiloucas
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引用次数: 0

Abstract

An overview of recent advances in measurement modalities using dual femtosecond laser configurations such as asynchronous optical sampling and frequency comb spectrometry is provided. These enable time-resolved interactions of light with matter across different parts of the electromagnetic spectrum. An enhanced energy exchange and thus signal-to-noise-ratio between a sensing system and its local environment is possible through the use of resonant structures, metamaterials, plasmonics, dielectric microspheres and other slow-light structures. Finally, new ways of interpreting measurements of relevance to nanotechnology using state space network analysis, system identification and dielectrics theory are discussed using examples from atomic force microscopy, memristive systems and nanosquids (superconducting quantum interference devices).
先进的新型测量和识别方法概述
概述了使用双飞秒激光配置的测量方式的最新进展,如异步光学采样和频率梳光谱。这使得光与物质在电磁波谱的不同部分之间的时间分辨相互作用成为可能。通过使用共振结构、超材料、等离子体、介电微球和其他慢光结构,传感系统与其局部环境之间的能量交换和信噪比得到增强是可能的。最后,利用原子力显微镜、忆阻系统和纳米鱿鱼(超导量子干涉器件)的例子,讨论了利用状态空间网络分析、系统识别和电介质理论解释与纳米技术相关的测量的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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