分光计
宽带
范德瓦尔斯力
光电子学
材料科学
光电探测器
光学
带宽(计算)
干涉测量
窄带
光子学
二极管
探测器
成像光谱仪
物理
计算机科学
电信
分子
量子力学
作者
Md Gius Uddin,Susobhan Das,Abde Mayeen Shafi,Lei Wang,Xiaoqi Cui,Fedor Nigmatulin,Faisal Ahmed,Andreas C. Liapis,Weiwei Cai,Zongyin Yang,Harri Lipsanen,Tawfique Hasan,Hoon Hahn Yoon,Zhipei Sun
标识
DOI:10.1038/s41467-024-44702-8
摘要
Abstract Miniaturized spectrometers are of immense interest for various on-chip and implantable photonic and optoelectronic applications. State-of-the-art conventional spectrometer designs rely heavily on bulky dispersive components (such as gratings, photodetector arrays, and interferometric optics) to capture different input spectral components that increase their integration complexity. Here, we report a high-performance broadband spectrometer based on a simple and compact van der Waals heterostructure diode, leveraging a careful selection of active van der Waals materials- molybdenum disulfide and black phosphorus, their electrically tunable photoresponse, and advanced computational algorithms for spectral reconstruction. We achieve remarkably high peak wavelength accuracy of ~2 nanometers, and broad operation bandwidth spanning from ~500 to 1600 nanometers in a device with a ~ 30×20 μm 2 footprint. This diode-based spectrometer scheme with broadband operation offers an attractive pathway for various applications, such as sensing, surveillance and spectral imaging.
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