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作者机构:National Key Laboratory of Advanced Micro and Nano Manufacture TechnologyBeijing 100871PR China School of Integrated CircuitsPeking UniversityBeijing 100871PR China Beijing Advanced Innovation Center for Integrated CircuitsBeijing 100871PR China Frontiers Science Center for Nano-optoelectronicsPeking UniversityBeijing 100871PR China
出 版 物:《Microsystems & Nanoengineering》 (微系统与纳米工程(英文))
年 卷 期:2025年第11卷第1期
页 面:237-246页
核心收录:
学科分类:070207[理学-光学] 07[理学] 08[工学] 0803[工学-光学工程] 0702[理学-物理学]
基 金:supported by the National Key R&D Program of China(Grant No.2021YFB3200100) the National Natural Science Foundation of China(Grant No.61931018 and 61974004)
主 题:localized surface plasmon resonance metasurface sensitivity function ultrasensitive angular interrogation metasurface sensor localized surface plasmon resonance wavelength sensitivity transverse electric mode surface lattice transverse electric mode surface lattice resonance
摘 要:The localized surface plasmon resonance metasurface is a research hotspot in the sensing field since it can enhance the light-matter interaction in the nanoscale,but the wavelength sensitivity is far from comparable with that of prism-coupled surface plasmon polariton(SPP).Herein,we propose and demonstrate an ultrasensitive angular interrogation sensor based on the transverse electric mode surface lattice resonance(SLR)mechanism in an all-metal *** theory,we derive the sensitivity function in detail and emphasize the refraction effect at the air-solution interface,which influences the SLR position and improves the sensitivity performance greatly in the *** the measurement,a broadband light source substitutes the single-wavelength laser generally used in traditional angular sensing,and the measured SLR wavelength of broadband illuminant at normal incidence is defined as the single wavelength,avoiding the sensitivity loss from the large *** experimental sensitivity can reach 4304.35°/RIU,promoting an order of magnitude compared to those of *** research provides a novel theory as well as the corresponding crucial approach to achieving ultrasensitive angular sensing.