Miniaturized Spectrometers with a Tunable van der Waals Junction
- Abstract
- Miniaturized computational spectrometers, which can obtain incident spectra using a combination of device spectral responses and reconstruction algorithms, are essential for on-chip and implantable applications. Highly sensitive spectral measurement using a single detector allows the footprints of such spectrometers to be scaled down while achieving spectral resolution approaching that of benchtop systems. We report a high-performance computational spectrometer based on a single van der Waals junction with an electrically tunable transport-mediated spectral response. We achieve high peak wavelength accuracy (∼0.36 nanometers), high spectral resolution (∼3 nanometers), broad operation bandwidth (from ∼405 to 845 nanometers), and proof-of-concept spectral imaging. Our approach provides a route toward ultraminiaturization and offers unprecedented performance in accuracy, resolution, and operation bandwidth for single-detector computational spectrometers.
- Author(s)
- Yoon, Hoon Hahn; Fernandez, Henry A.; Nigmatulin, Fedor; Cai, Weiwei; Yang, Zongyin; Cui, Hanxiao; Ahmed, Faisal; Cui, Xiaoqi; Uddin, Md Gius; Minot, Ethan D.; Lipsanen, Harri; Kim, Kwanpyo; Hakonen, Pertti; Hasan, Tawfique; Sun, Zhipei
- Issued Date
- 2022-10
- Type
- Article
- DOI
- 10.1126/science.add8544
- URI
- https://scholar.gist.ac.kr/handle/local/8658
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