High-sensitivity computational miniaturized terahertz spectrometer using a plasmonic filter array and a modified multilayer residual CNN

Author:

Liu Mengjuan1,Yang Meichen23,Zhu Jiaqi1234ORCID,Zhu He23,Wang Yao1,Ren Ziyang1,Zhai Yihui1,Zhu Haiming1,Shan Yufeng23,Qi Hongxing23,Duan Junli23,Wu Huizhen15,Dai Ning23456

Affiliation:

1. Zhejiang Province Key Laboratory of Quantum Technology and Devices, School of Physics, and State Key Laboratory of Silicon and Advanced Semiconductor Materials , Zhejiang University , Hangzhou 310058 , China

2. Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences , Hangzhou , Zhejiang 310024 , China

3. University of Chinese Academy of Sciences , Beijing 100049 , China

4. State Key Laboratory of Infrared Physics , Shanghai Institute of Technical Physics, Chinese Academy of Sciences , Shanghai 200083 , China

5. Zhejiang Laboratory , Hangzhou 311100 , China

6. Jiangsu Collaborative Innovation Center of Photovoltaic Science and Engineering , Changzhou 213164 , China

Abstract

Abstract Spectrometer miniaturization is desired for handheld and portable applications, yet nearly no miniaturized spectrometer is reported operating within terahertz (THz) waveband. Computational strategy, which can acquire incident spectral information through encoding and decoding it using optical devices and reconstruction algorithms, respectively, is widely employed in spectrometer miniaturization as artificial intelligence emerges. We demonstrate a computational miniaturized THz spectrometer, where a plasmonic filter array tailors the spectral response of a blocked-impurity-band detector. Besides, an adaptive deep-learning algorithm is proposed for spectral reconstructions with curbing the negative impact from the optical property of the filter array. Our spectrometer achieves modest spectral resolution (2.3 cm−1) compared with visible and infrared miniaturized spectrometers, outstanding sensitivity (e.g., signal-to-noise ratio, 6.4E6: 1) superior to common benchtop THz spectrometers. The combination of THz optical devices and reconstruction algorithms provides a route toward THz spectrometer miniaturization, and further extends the applicable sphere of the THz spectroscopy technique.

Funder

Key Research Project of Zhejiang Lab

Center-initiated Research Project of Zhejiang Lab

China Postdoctoral Science Foundation

Hangzhou Science and Technology Bureau of Zhejiang Province

National Natural Science Foundation of China

Zhejiang Provincial Natural Science Foundation of China

Research Funds of Hangzhou Institute for Advanced Study

Zhejiang University

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

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