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Autori principali: Yao, Chunhui, Zhang, Wanlu, Bao, Peng, Ma, Jie, Zhuo, Wei, Chen, Minjia, Shi, Zhitian, Zhou, Jingwen, Ye, Yuxiao, Ming, Liang, Yan, Ting, Penty, Richard, Cheng, Qixiang
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2407.18172
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author Yao, Chunhui
Zhang, Wanlu
Bao, Peng
Ma, Jie
Zhuo, Wei
Chen, Minjia
Shi, Zhitian
Zhou, Jingwen
Ye, Yuxiao
Ming, Liang
Yan, Ting
Penty, Richard
Cheng, Qixiang
author_facet Yao, Chunhui
Zhang, Wanlu
Bao, Peng
Ma, Jie
Zhuo, Wei
Chen, Minjia
Shi, Zhitian
Zhou, Jingwen
Ye, Yuxiao
Ming, Liang
Yan, Ting
Penty, Richard
Cheng, Qixiang
contents Miniaturized spectrometers hold great promise for in situ, in vitro, and even in vivo sensing applications. However, their size reduction imposes vital performance constraints in meeting the rigorous demands of spectroscopy, including fine resolution, high accuracy, and ultra-wide observation window. The prevailing view in the community holds that miniaturized spectrometers are most suitable for the coarse identification of signature peaks. In this paper, we present an integrated reconstructive spectrometer that enables near-infrared (NIR) spectroscopic metrology, and demonstrate a fully packaged sensor with auxiliary electronics. Such a sensor operates over a 520 nm bandwidth together with a resolution of less than 8 pm, which translates into a record-breaking bandwidth-to-resolution ratio of over 65,000. The classification of different types of solid substances and the concentration measurement of aqueous and organic solutions are performed, all achieving approximately 100% accuracy. Notably, the detection limit of our sensor matches that of the commercial benchtop counterparts, which is as low as 0.1% (i.e. 100 mg/dL) for identifying the concentration of glucose solution.
format Preprint
id arxiv_https___arxiv_org_abs_2407_18172
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Chip-scale sensor for spectroscopic metrology
Yao, Chunhui
Zhang, Wanlu
Bao, Peng
Ma, Jie
Zhuo, Wei
Chen, Minjia
Shi, Zhitian
Zhou, Jingwen
Ye, Yuxiao
Ming, Liang
Yan, Ting
Penty, Richard
Cheng, Qixiang
Optics
Miniaturized spectrometers hold great promise for in situ, in vitro, and even in vivo sensing applications. However, their size reduction imposes vital performance constraints in meeting the rigorous demands of spectroscopy, including fine resolution, high accuracy, and ultra-wide observation window. The prevailing view in the community holds that miniaturized spectrometers are most suitable for the coarse identification of signature peaks. In this paper, we present an integrated reconstructive spectrometer that enables near-infrared (NIR) spectroscopic metrology, and demonstrate a fully packaged sensor with auxiliary electronics. Such a sensor operates over a 520 nm bandwidth together with a resolution of less than 8 pm, which translates into a record-breaking bandwidth-to-resolution ratio of over 65,000. The classification of different types of solid substances and the concentration measurement of aqueous and organic solutions are performed, all achieving approximately 100% accuracy. Notably, the detection limit of our sensor matches that of the commercial benchtop counterparts, which is as low as 0.1% (i.e. 100 mg/dL) for identifying the concentration of glucose solution.
title Chip-scale sensor for spectroscopic metrology
topic Optics
url https://arxiv.org/abs/2407.18172