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Article

Pixelated Filter Array for On-Chip Polarized Spectral Detection

1
MOE Key Laboratory of Advanced Micro-Structured Materials, Shanghai 200092, China
2
Institute of Precision Optical Engineering, School of Physics Science and Engineering, Tongji University, Shanghai 200092, China
3
Shanghai Frontiers Science Center of Digital Optics, Shanghai 200092, China
4
Shanghai Institute of Intelligent Science and Technology, Tongji University, Shanghai 200092, China
*
Author to whom correspondence should be addressed.
Nanomaterials 2023, 13(19), 2624; https://doi.org/10.3390/nano13192624
Submission received: 30 August 2023 / Revised: 15 September 2023 / Accepted: 20 September 2023 / Published: 23 September 2023
(This article belongs to the Special Issue Functional Nanomaterials for Sensing and Detection (2nd Edition))

Abstract

On-chip multi-dimensional detection systems integrating pixelated polarization and spectral filter arrays are the latest trend in optical detection instruments, showing broad application potential for diagnostic medical imaging and remote sensing. However, thin-film or microstructure-based filter arrays typically have a trade-off between the detection dimension, optical efficiency, and spectral resolution. Here, we demonstrate novel on-chip integrated polarization spectral detection filter arrays consisting of metasurfaces and multilayer films. The metasurfaces with two nanopillars in one supercell are designed to modulate the Jones matrix for polarization selection. The angle of diffraction of the metasurfaces and the optical Fabry–Perot (FP) cavities determine the spectrum’s center wavelength. The polarization spectral filter arrays are placed on top of the CMOS sensor; each array corresponds to one pixel, resulting in high spectral resolution and optical efficiency in the selected polarization state. To verify the methodology, we designed nine-channel polarized spectral filter arrays in a wavelength range of 1350 nm to 1550 nm for transverse electric (TE) linear polarization. The array has a 10 nm balanced spectral resolution and average peak transmission efficiency of over 75%, which is maintained by utilizing lossless dielectric material. The proposed array can be fabricated using overlay e-beam lithography, and the process is CMOS-compatible. The proposed array enables broader applications of in situ on-chip polarization spectral detection with high efficiency and spectral resolution, as well as in vivo imaging systems.
Keywords: polarized spectral detection; filter array; on-chip detection; metasurface polarized spectral detection; filter array; on-chip detection; metasurface

Share and Cite

MDPI and ACS Style

Liu, Y.; Feng, C.; Dong, S.; Zhu, J.; Wang, Z.; Cheng, X. Pixelated Filter Array for On-Chip Polarized Spectral Detection. Nanomaterials 2023, 13, 2624. https://doi.org/10.3390/nano13192624

AMA Style

Liu Y, Feng C, Dong S, Zhu J, Wang Z, Cheng X. Pixelated Filter Array for On-Chip Polarized Spectral Detection. Nanomaterials. 2023; 13(19):2624. https://doi.org/10.3390/nano13192624

Chicago/Turabian Style

Liu, Yuechen, Chao Feng, Siyu Dong, Jingyuan Zhu, Zhanshan Wang, and Xinbin Cheng. 2023. "Pixelated Filter Array for On-Chip Polarized Spectral Detection" Nanomaterials 13, no. 19: 2624. https://doi.org/10.3390/nano13192624

APA Style

Liu, Y., Feng, C., Dong, S., Zhu, J., Wang, Z., & Cheng, X. (2023). Pixelated Filter Array for On-Chip Polarized Spectral Detection. Nanomaterials, 13(19), 2624. https://doi.org/10.3390/nano13192624

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