论文标题
混合石墨烯 - 量子点 - 点光电探测器的显式增益方程
Explicit gain equations for hybrid graphene-quantum-dot photodetectors
论文作者
论文摘要
石墨烯是一种用于宽带光调整的有吸引力的材料,但受到弱光吸收。带有量子点的涂料石墨烯可以显着增强光吸收并产生极高的照片增益。不幸的是,经典的收益理论通常通过经典收益理论来解释这种高收益,甚至可能是值得怀疑的。在这项工作中,我们设法为混合石墨烯 - 量词点光电遗传器提供了明确的增益方程。由于功能不匹配,涂在石墨烯上的硫化铅(PBS)量子点将在量子点和石墨烯界面附近形成一个表面耗尽区域。光照明缩小了表面耗竭区域的缩小,形成了一个通知石墨烯的光电压。结果,观察到石墨烯中的高照片增长。显式增益方程来自石墨烯的理论门传递特性以及光电压与光照射强度的相关性。派生的显式增益方程非常符合实验数据,从中提取物理参数。
Graphene is an attractive material for broadband photodetection but suffers from weak light absorption. Coating graphene with quantum dots can significantly enhance light absorption and create extraordinarily high photo gain. This high gain is often explained by the classical gain theory which is unfortunately an implicit function and may even be questionable. In this work, we managed to derive explicit gain equations for hybrid graphene-quantum-dot photodetectors. Due to the work function mismatch, lead sulfide (PbS) quantum dots coated on graphene will form a surface depletion region near the interface of quantum dots and graphene. Light illumination narrows down the surface depletion region, creating a photovoltage that gates the graphene. As a result, high photo gain in graphene is observed. The explicit gain equations are derived from the theoretical gate transfer characteristics of graphene and the correlation of the photovoltage with the light illumination intensity. The derived explicit gain equations fit well with the experimental data, from which physical parameters are extracted.