基于黑砷磷的室温高探测率中红外光电探测器
材料科学
2017-07-04 v1 介观与纳米尺度物理
摘要
中红外(MIR)光谱范围涉及分子“指纹”成像、遥感、自由空间通信和光雷达等重要应用,具有特殊的科学意义和技术重要性。然而,当前最先进的MIR探测材料受限于本征噪声和不便的制备工艺,导致光电探测器成本高昂且需低温操作。我们报道了基于黑砷磷的长波红外光电探测器,可在室温下工作至8.2 um,进入第二个MIR大气传输窗口。结合范德瓦耳斯异质结,在3-5 um范围内获得了高于4.9×10^9 Jones的室温比探测率。该光电探测器以零偏压光伏模式工作,可实现快速光响应和低暗噪声。我们的范德瓦耳斯异质结光电探测器不仅证明了黑砷磷是MIR光电子应用的有前途候选材料,也为抑制光子器件中1/f噪声的通用策略铺平了道路。
引用
@article{arxiv.1705.00801,
title = {Room-temperature high detectivity mid-infrared photodetectors based on black arsenic phosphorus},
author = {Mingsheng Long and Anyuan Gao and Peng Wang and Hui Xia and Claudia Ott and Chen Pan and Yajun Fu and Erfu Liu and Xiaoshuang Chen and Wei Lu and Tom Nilges and Jianbin Xu and Xiaomu Wang and Weida Hu and Feng Miao},
journal= {arXiv preprint arXiv:1705.00801},
year = {2017}
}
备注
To appear in Science Advances; 27 pages, 3 figures, 9 supplementary figures; submitted on Feb. 24th, 2017