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Epitaxial Topological Insulator Bi<sub>2</sub>Te<sub>3</sub> for Fast Visible to Mid-Infrared Heterojunction Photodetector by Graphene As Charge Collection Medium
82
Citations
41
References
2022
Year
Three dimensional topological insulators have a thriving application prospect in broadband photodetectors due to the possessed topological quantum states. Herein, a large area and uniform topological insulator bismuth telluride (Bi<sub>2</sub>Te<sub>3</sub>) layer with high crystalline quality is directly epitaxial grown on GaAs(111)B wafer using a molecular beam epitaxy process, ensuring efficient out-of-plane carriers transportation due to reduced interface defects influence. By tiling monolayer graphene (Gr) on the as-prepared Bi<sub>2</sub>Te<sub>3</sub> layer, a Gr/Bi<sub>2</sub>Te<sub>3</sub>/GaAs heterojunction array prototype was further fabricated, and our photodetector array exhibited the capability of sensing ultrabroad photodetection wavebands from visible (405 nm) to mid-infrared (4.5 μm) with a high specific detectivity (<i>D*</i>) up to 10<sup>12</sup> Jones and a fast response speed at about microseconds at room temperature. The enhanced device performance can be attributed to enhanced light-matter interaction at the high-quality heterointerface of Bi<sub>2</sub>Te<sub>3</sub>/GaAs and improved carrier collection efficiency through graphene as a charge collection medium, indicating an application prospect of topological insulator Bi<sub>2</sub>Te<sub>3</sub> for fast-speed broadband photodetection up to a mid-infrared waveband. This work demonstrated the potential of integrated topological quantum materials with a conventional functional substrate to fabricate the next generation of broadband photodetection devices for uncooled focal plane array or infrared communication systems in future.
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2019 | 619 | |
2018 | 425 | |
2016 | 383 | |
2020 | 370 | |
2015 | 251 | |
2021 | 249 | |
2019 | 248 | |
2019 | 240 | |
2018 | 217 | |
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