Miniaturized spectral sensing with a tunable optoelectronic interface
Kuvaus
Reconstructive optoelectronic spectroscopy has generated significant interest in the miniaturization of traditional spectroscopic tools, such as spectrometers. However, most state-of-the-art demonstrations face fundamental limits of rank-deficiency in the photoresponse matrix. In this work, we demonstrate a miniaturized spectral sensing system using an electrically tunable compact optoelectronic interface, which generates distinguishable photoresponses from various input spectra, enabling accurate spectral identification with a device footprint of 5μm×5μm. We report narrow-band spectral sensing with peak accuracies of ∼0.19 nm in free space and ∼2.45 nm on-chip. Additionally, we implement broadband complex spectral sensing for material identification, applicable to organic dyes, metals, semiconductors, and dielectrics. This work advances high-performance, miniaturized optical spectroscopy for both free-space and on-chip applications, offering cost-effective solutions, broad applicability, and scalable manufacturing.
Näytä enemmänJulkaisuvuosi
2024
Aineiston tyyppi
Tekijät
Department of Electronics and Nanoengineering
Hoon Hahn Yoon - Tekijä
Igor Reduto - Tekijä
Lei Wang - Tekijä
Seppo Honkanen - Tekijä
Tawfique Hasan - Tekijä
Timo Aalto - Tekijä
Weiwei Cai - Tekijä
Yi Zhang - Tekijä
Zongyin Yang - Tekijä
Dryad Digital Repository - Julkaisija
Gwangju Institute of Science and Technology - Muu tekijä
Shanghai Jiao Tong University - Muu tekijä
University of Camridge, England - Muu tekijä
University of Eastern Finland - Muu tekijä
VTT Technical Research Centre of Finland Ltd. - Muu tekijä
Zhejiang University - Muu tekijä
Projekti
Muut tiedot
Tieteenalat
Nanoteknologia
Kieli
Saatavuus
Avoin