Uddin Md Gius, Das Susobhan, Shafi Abde Mayeen, Wang Lei, Cui Xiaoqi, Nigmatulin Fedor, Ahmed Faisal, Liapis Andreas C, Cai Weiwei, Yang Zongyin, Lipsanen Harri, Hasan Tawfique, Yoon Hoon Hahn, Sun Zhipei
Department of Electronics and Nanoengineering, Aalto University, Espoo, 02150, Finland.
QTF Centre of Excellence, Aalto University, Aalto, 00076, Finland.
Nat Commun. 2024 Jan 17;15(1):571. doi: 10.1038/s41467-024-44702-8.
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 footprint. This diode-based spectrometer scheme with broadband operation offers an attractive pathway for various applications, such as sensing, surveillance and spectral imaging.
微型光谱仪对于各种片上和可植入光子及光电应用具有极大的吸引力。目前最先进的传统光谱仪设计严重依赖于庞大的色散组件(如光栅、光电探测器阵列和干涉光学器件)来捕获不同的输入光谱成分,这增加了它们的集成复杂性。在此,我们报告了一种基于简单紧凑的范德华异质结构二极管的高性能宽带光谱仪,它利用了对活性范德华材料(二硫化钼和黑磷)的精心选择、它们的电可调光响应以及用于光谱重建的先进计算算法。在一个尺寸约为30×20μm的器件中,我们实现了约2纳米的极高峰值波长精度,以及从约500到1600纳米的宽工作带宽。这种具有宽带操作的基于二极管的光谱仪方案为传感、监视和光谱成像等各种应用提供了一条有吸引力的途径。