理论(学习稳定性)
干涉测量
噪音(视频)
灵敏度(控制系统)
等离子体子
相(物质)
物理
表面等离子共振
诺共振
光子学
相位噪声
光电子学
电子工程
材料科学
光学
计算机科学
纳米技术
工程类
人工智能
纳米颗粒
量子力学
图像(数学)
机器学习
作者
Isabel Barth,Donato Conteduca,Pin Dong,J. S. Wragg,Pankaj K. Sahoo,Guilherme S. Arruda,Emiliano R. Martins,Thomas F. Krauss
出处
期刊:Optica
[Optica Publishing Group]
日期:2024-01-22
卷期号:11 (3): 354-354
被引量:2
标识
DOI:10.1364/optica.510524
摘要
Interferometry offers a precise means of interrogating resonances in dielectric and plasmonic metasurfaces, surpassing spectrometer-imposed resolution limits. However, interferometry implementations often face complexity or instability issues due to heightened sensitivity. Here, we address the necessity for noise compensation and tolerance by harnessing the inherent capabilities of photonic resonances. Our proposed solution, termed “resonant phase noise matching,” employs optical referencing to align the phases of equally sensitive, orthogonal components of the same mode. This effectively mitigates drift and noise, facilitating the detection of subtle phase changes induced by a target analyte through spatially selective surface functionalization. Validation of this strategy using Fano resonances in a 2D photonic crystal slab showcases noteworthy phase stability ( σ <10 −4 π ). With demonstrated label-free detection of low-molecular-weight proteins at clinically relevant concentrations, resonant phase noise matching presents itself as a potentially valuable strategy for advancing scalable, high-performance sensing technology beyond traditional laboratory settings.
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