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High Conversion Efficiency Carbon Nanotube-Based Barrier-Free Bipolar-Diode Photodetector

机译:基于碳纳米管的高转换效率无障碍双极二极管光电探测器

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摘要

Conversion efficiency (CE) is the most important figure of merit for photodetectors. For carbon nanotubes (CNT) based photodetectors, the CE is mainly determined by excitons dissociation and transport of free carriers toward contacts. While phonon-assisted exciton dissociation mechanism is effective in split-gate CNT p-n diodes, the CE is typically low in these devices, approximately 1-5%. Here, we evaluate the performance of a barrier-free bipolar diode (BFBD), which is basically a semiconducting CNT asymmetrically contacted by perfect n-type ohmic contact (Sc) and p-type ohmic contact (Pd) at the two ends of the diode. We show that the CE in short channel BFBD devices (e.g., 60 nm) is over 60%, and it reduces rapidly with increasing channel length. We find that the electric-field-assisted mechanism dominates the dissociation rate of excitons in BFBD devices at zero bias and thus the photocurrent generation process. By performing a time-resolved and spatial-resolved Monte Carlo simulation, we find that there exists an effective electron (hole)-rich region near the n-type (p-type) electrode in the asymmetrically contacted BFBD device, where the electric-field strength is larger than 17 Wpm and exciton dissociation is extremely fast (<0.1 ps), leading to very high CE in the BFBD devices.
机译:转换效率(CE)是光电探测器最重要的品质因数。对于基于碳纳米管(CNT)的光电探测器,CE主要取决于激子离解和自由载流子向接触的迁移。尽管声子辅助激子解离机制在分离栅CNT p-n二极管中很有效,但这些器件的CE通常较低,约为1%至5%。在这里,我们评估了无障碍双极型二极管(BFBD)的性能,该二极管基本上是半导电的CNT,在碳纳米管的两端通过完美的n型欧姆接触(Sc)和p型欧姆接触(Pd)不对称接触。二极管。我们表明,短通道BFBD设备(例如60 nm)中的CE超过60%,并且随着通道长度的增加而迅速降低。我们发现,电场辅助机制在零偏压下主导了BFBD器件中激子的解离速率,从而主导了光电流的产生过程。通过执行时间分辨和空间分辨的蒙特卡洛模拟,我们发现在非对称接触式BFBD器件的n型(p型)电极附近存在有效的富电子(空穴)区域,其中电场强大于17 Wpm,激子离解非常快(<0.1 ps),导致BFBD器件具有很高的CE。

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