Shen Daozhi, Yang HeeBong, Spudat Christian, Patel Tarun, Zhong Shazhou, Chen Fangchu, Yan Jian, Luo Xuan, Cheng Meixin, Sciaini Germán, Sun Yuping, Rhodes Daniel A, Timusk Thomas, Zhou Y Norman, Kim Na Young, Tsen Adam W
Institute for Quantum Computing, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.
Department of Chemistry, University of Waterloo, Waterloo, Ontario Canada N2L 3G1.
Nano Lett. 2022 Apr 27;22(8):3425-3432. doi: 10.1021/acs.nanolett.2c00741. Epub 2022 Apr 11.
The ability to perform broadband optical spectroscopy with subdiffraction-limit resolution is highly sought-after for a wide range of critical applications. However, sophisticated near-field techniques are currently required to achieve this goal. We bypass this challenge by demonstrating an extremely broadband photodetector based on a two-dimensional (2D) van der Waals heterostructure that is sensitive to light across over a decade in energy from the mid-infrared (MIR) to deep-ultraviolet (DUV) at room temperature. The devices feature high detectivity (>10 cm Hz W) together with high bandwidth (2.1 MHz). The active area can be further miniaturized to submicron dimensions, far below the diffraction limit for the longest detectable wavelength of 4.1 μm, enabling such devices for facile measurements of local optical properties on atomic-layer-thickness samples placed in close proximity. This work can lead to the development of low-cost and high-throughput photosensors for hyperspectral imaging at the nanoscale.
在广泛的关键应用中,能够实现亚衍射极限分辨率的宽带光学光谱技术备受追捧。然而,目前需要复杂的近场技术才能实现这一目标。我们通过展示一种基于二维(2D)范德华异质结构的极宽带光电探测器,绕过了这一挑战。该探测器在室温下对从 中红外(MIR)到深紫外(DUV)超过十年能量范围的光敏感。这些器件具有高探测率(>10 cm Hz W)以及高带宽(2.1 MHz)。有源区可以进一步缩小到亚微米尺寸,远低于最长可检测波长 4.1μm 的衍射极限,使得此类器件能够轻松测量紧邻放置的原子层厚度样品的局部光学性质。这项工作可推动低成本、高通量的纳米级高光谱成像光电传感器的发展。