2D wavelength-polarization dispersive microspectroscope based on a hybrid plasmonic helical nanostructure
Zhiguang Sun, Huan Chen, Zhenglong Zhang, Lujun Pan, Yiming Yang, Bin, Dong, Yurui Fang

TL;DR
This paper introduces a compact 2D microspectroscope using a hybrid plasmonic nanostructure that simultaneously analyzes wavelength and polarization of light, enabling quick, integrated optical measurements.
Contribution
The novel 2D wavelength-polarization dispersive microspectroscope based on Au/CNC nanostructure enables simultaneous spectral and polarization analysis in a tiny footprint.
Findings
Revealed unique 2D dispersive characteristics of Au/CNC.
Achieved wavelength detection across visible-near-infrared range.
Distinguished different polarization states, including circular and linear.
Abstract
Microspectrometer features remarkable portability and integration, and is prospected to provide quick detection tools to daily life and revolutionary techniques to researchers. For the extremely finite footprint, microspectrometer can hardly work to analyze the polarization feature by placing polarizer in the optical path like conventional spectrometers. Here, we demonstrate a novel 2D wavelength-polarization dispersive microspectroscope based on carbon nanocoil with plasmonic Au nanopariticles (Au/CNC) as a dispersive component. Explored by the microspectrum and Fourier-space microscopy, a unique 2D dispersive characteristic of the Au/CNC is revealed. Along the axis of the coil, Au/CNC disperses light as wavelength to bands of different diffraction orders like a grating. Wavelength of the incident light can be obtained from the position of the signal lines in a quite large…
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Taxonomy
TopicsPlasmonic and Surface Plasmon Research · Gold and Silver Nanoparticles Synthesis and Applications · Metamaterials and Metasurfaces Applications
