Department of Physics and Chemistry (DiFC)-Emilio Segrè, University of Palermo, Viale delle Scienze, Edificio 18, 90128 Palermo, Italy.
IMEM/CNR, Parco Area delle Scienze 37/A, 43100 Parma, Italy.
Sensors (Basel). 2023 Jul 1;23(13):6075. doi: 10.3390/s23136075.
The estimation of the characteristic parameters of the electrical contacts in CdZnTe and CdTe detectors is related to the identification of the main transport mechanisms dominating the currents. These investigations are typically approached by modelling the current-voltage -) curves with the interfacial layer-thermionic-diffusion (ITD) theory, which incorporates the thermionic emission, diffusion and interfacial layer theories into a single theory. The implementation of the ITD model in measured - curves is a critical procedure, requiring dedicated simplifications, several best fitting parameters and the identification of the voltage range where each transport mechanism dominates. In this work, we will present a novel method allowing through a simple procedure the estimation of some characteristic parameters of the metal-semiconductor interface in CdZnTe and CdTe detectors. The barrier height and the effects of the interfacial layer will be evaluated through the application of a new function related to the differentiation of the experimental - curves.
CdZnTe 和 CdTe 探测器中电接触的特征参数的估计与确定主导电流的主要输运机制有关。这些研究通常通过用界面层-热电子扩散(ITD)理论对电流-电压(-)曲线进行建模来进行,该理论将热电子发射、扩散和界面层理论纳入一个单一的理论中。在测量的 - 曲线中实现 ITD 模型是一个关键步骤,需要专门的简化、几个最佳拟合参数和确定每个输运机制占主导地位的电压范围。在这项工作中,我们将提出一种新的方法,通过一个简单的过程来估计 CdZnTe 和 CdTe 探测器中金属-半导体界面的一些特征参数。通过应用与实验 - 曲线的微分有关的新函数,可以评估势垒高度和界面层的影响。