Comparative Simulation of GaAs and AlGaAs Based On Triple Barriers-Resonant Tunneling Diode

Rupa Paul, Lamia Mannan, Tahseen Asma Meem, Md.Mehedi Hasan
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Abstract

This research shows the comparison of GaAs and AlGaAs Based triple Barrier Resonant Tunneling Diode. In this paper, the proposed model includes GaAs primarily based on a triple Barrier-Resonant Tunneling Diode (TBRTD) mannequin and it is compared with AlGaAs totally based on Quantum TBRTDs at room temperature. Two specific models are introduced in the proposed system. Firstly, the semi-classical Thomas-Fermi model and secondly, the Hartree quantum cost model to consider the performance of this mannequin in one-of-a-kind temperature. The RTD's performance at extreme low temperatures can be improved with the help of this examination. The results suggest high-height modern technology equipped with AlGaAs RTD and accomplish a high peak to valley ratio in comparison to GaAs RTD. They are based entirely on non-equilibrium Green's characteristic formalization inside ballistic limits. Additionally, contrast aids in comparing each model's higher system. The system was simulated using nanoHuB.org and a related tool that supports the numerous implications discussed in this study.
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基于三势垒-共振隧道二极管的GaAs与AlGaAs的对比仿真
本文研究了GaAs与AlGaAs基三势垒共振隧道二极管的比较。本文提出的模型包括主要基于三势垒共振隧道二极管(TBRTD)模型的GaAs,并在室温下与完全基于量子TBRTD的AlGaAs进行了比较。提出了两种具体的模型。首先,采用半经典Thomas-Fermi模型,其次,采用Hartree量子成本模型来考虑该模型在特殊温度下的性能。在这种测试的帮助下,RTD在极低温下的性能可以得到改善。结果表明,与GaAs RTD相比,AlGaAs RTD具有较高的峰谷比。它们完全基于弹道极限内的非平衡格林特征形式化。此外,对比有助于比较每个模型的高级系统。使用nanoHuB.org和一个支持本研究中讨论的众多含义的相关工具对该系统进行了模拟。
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