首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A novel graphene field-effect transistor for radiation sensing application with improved sensitivity: Proposal and analysis
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A novel graphene field-effect transistor for radiation sensing application with improved sensitivity: Proposal and analysis

机译:用于辐射传感应用的新型石墨烯场效应晶体管,具有更高的灵敏度:建议和分析

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摘要

In this paper, a new radiation sensitive field-effect Transistor (RADFET) dosimeter design based on armchair-edge graphene nanoribbon (AGNR), for high performance low-dose monitoring applications, is proposed through a quantum simulation study. The simulation approach used to investigate the proposed nanoscale RADFET is based on solving the Schrödinger equation using the mode space (MS) non-equilibrium Green’s function (NEGF) formalism coupled self-consistently with a two dimensional (2D) Poisson equation under the ballistic limits. The responsiveness of the proposed RADFET to the modulation of radiation-induced trapped charge densities is reflected via the threshold voltage, which is considered as a sensing parameter. The dosimeter behavior is investigated, and the impact of variation in physical and geometrical parameters on the dosimeter sensitivity is also studied. In comparison to other RADFETs designs, the proposed radiation sensor provides higher sensitivity and better scalability, which are the main requirements for futuristic dosimeters. The obtained results make the suggested RADFET dosimeter as a viable and attractive replacement to silicon-based MOS dosimeters.
机译:本文通过量子仿真研究,提出了一种基于扶手椅边缘石墨烯纳米带(AGNR)的新型辐射敏感场效应晶体管(RADFET)剂量计设计,用于高性能低剂量监测应用。用于研究拟议的纳米级RADFET的仿真方法是基于在弹道极限下使用模式空间(MS)非平衡格林函数(NEGF)形式主义与二维(2D)泊松方程自洽耦合求解Schrödinger方程的基础。所提出的RADFET对辐射诱导的俘获电荷密度的调制的响应性通过阈值电压反映出来,该阈值电压被视为传感参数。研究了剂量计行为,并研究了物理和几何参数变化对剂量计灵敏度的影响。与其他RADFET设计相比,拟议的辐射传感器具有更高的灵敏度和更好的可扩展性,这是未来剂量计的主要要求。获得的结果使建议的RADFET剂量计可以替代硅基MOS剂量计。

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