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Quantitative characterization of carrier transport in nanowire photodetectors

机译:纳米线光电探测器中载流子传输的定量表征

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Scanning photocurrent microscopy was used to study carrier transport processes in semiconductor nanowire photodetectors. Under high-level local carrier injection in CdS nanowire devices, spatially non-uniform photocurrent distributions were observed and explained in terms of bipolar transport with spatially separated electrons and holes. The mobility-lifetime product, (μτ), for both electrons and holes was determined in intrinsic CdS nanowire photodetectors under high-level injection, (μτ) was enhanced compared to the bulk values as a result of the carrier spatial separation. Local time-resolved photocurrent measurements supported this interpretation of the enhanced (μτ) . Global time-resolved photocurrent measurements were used to establish a 10%-90% rise time of ~ 6ns (limited by the instrument response) and a 90%-10% fall time of ~ 20ns for the nanowire photodetectors. A small fraction of the total photocurrent exhibited a long power-law decay attributed to carrier trapping/detrapping processes, and characteristic shallow trap energy of 60meV was extracted. Spatially uniform photocurrent profiles were observed in Si nanowire photodetectors under low-level injection conditions, consistent with unipolar minority carrier transport. Under varying biases, consistent variations in the photocurrent profiles were observed and attributed to the effect of the applied electric fields on drift and diffusion of minority carriers.
机译:扫描光电流显微镜用于研究半导体纳米线光电探测器中的载流子传输过程。在CdS纳米线器件中的高水平局部载流子注入下,观察到空间上不均匀的光电流分布,并根据在空间上分离的电子和空穴的双极传输进行了解释。在高水平注入下,本征CdS纳米线光电探测器确定了电子和空穴的迁移率-寿命乘积(μ),与载流子空间分隔的结果相比,与体积值相比有所提高。局部时间分辨的光电流测量结果支持了这种增强(μ)的解释。全局时间分辨光电流测量用于建立纳米线光电探测器的10%-90%的上升时间〜6ns(受仪器响应限制)和90%-10%的下降时间〜20ns。总光电流的一小部分表现出长的幂律衰减,这归因于载流子的俘获/去俘获过程,并且提取了60meV的特征性浅陷阱能量。在硅纳米线光电探测器中在低水平注入条件下观察到空间均匀的光电流分布,这与单极少数载流子传输一致。在变化的偏压下,观察到光电流分布的一致变化,并且归因于所施加的电场对少数载流子的漂移和扩散的影响。

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