响应度
光电探测器
光电二极管
光电子学
晶体管
光伏系统
带宽(计算)
材料科学
高增益天线
电压
计算机科学
电气工程
电信
工程类
作者
Yuanzhe Li,Guowei Chen,Shenghe Zhao,Chuan Liu,Ni Zhao
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-09-23
卷期号:8 (38)
被引量:17
标识
DOI:10.1126/sciadv.abq0187
摘要
The gain-bandwidth trade-off limits the development of high-performance photodetectors; i.e., the mutual restraint between the response speed and gain has intrinsically limited performance optimization of photomultiplication phototransistors and photodiodes. Here, we show that a monolithically integrated photovoltaic transistor can solve this dilemma. In this structure, the photovoltage generated by the superimposed perovskite solar cell, acting as a float gate, is amplified by the underlying metal oxide field-effect transistor. By eliminating deep-trap defects through processing optimization, we achieved devices with a maximum responsivity close to 6 × 104 A/W, a specific detectivity (D*) of 1.06 × 1013 Jones, and an f3dB of 1.2 MHz at a low driving voltage of 3 V. As a result, a record gain-bandwidth product is achieved. The device further exhibits the advantage in photoplethysmography detection with weak illuminations, where our device accurately detects the detailed features that are out of the capability of conventional photodetectors.
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