Chip-integrated van der Waals PN heterojunction photodetector with low dark current and high responsivity
Ruijuan Tian, Xuetao Gan, Chen Li, Xiaoqing Chen, Siqi Hu, Linpeng Gu,, Dries Van Thourhout, Andres Castellanos-Gomez, Zhipei Sun, Jianlin Zhao

TL;DR
This paper introduces a van der Waals PN heterojunction photodetector integrated on a chip, achieving low dark current, high responsivity, and fast response, suitable for advanced photonic circuits.
Contribution
It reports a novel chip-integrated van der Waals PN heterojunction photodetector with significantly reduced dark current and enhanced responsivity compared to previous designs.
Findings
Dark current lower than 7 nA at 1 V bias
Responsivity up to 709 mA/W with electrostatic doping
Response bandwidth of approximately 1.0 GHz
Abstract
Two-dimensional materials are attractive for constructing high-performance photonic chip-integrated photodetectors because of their remarkable electronic and optical properties and dangling-bond-free surfaces. However, the reported chip-integrated two-dimensional material photodetectors were mainly implemented with the configuration of metal-semiconductor-metal, suffering from high dark currents and low responsivities at high operation speed. Here, we report a van der Waals PN heterojunction photodetector, composed of p-type black phosphorous and n-type molybdenum telluride, integrated on a silicon nitride waveguide. The built-in electric field of the PN heterojunction significantly suppresses the dark current and improves the responsivity. Under a bias of 1 V pointing from n-type molybdenum telluride to p-type black phosphorous, the dark current is lower than 7 nA, which is more than…
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Taxonomy
Topics2D Materials and Applications · Photonic and Optical Devices · Advanced Fiber Laser Technologies
