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Enhanced sensitivity of double gate junctionless transistor architecture for biosensing applications

机译:用于生物传感应用的双栅极无结晶体管架构的灵敏度提高

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In the present work, we demonstrate the potential of double gate junctionless (JL) architecture for enhanced sensitivity for detecting biomolecules in cavity modulated field effect transistors (FETs). The higher values of body factor, achieved in asymmetric gate operation under impact ionization is utilized for enhanced sensing margin which is nearly five times higher than compared to symmetrical mode operation. The intrinsic detection sensitivity is evaluated in terms of threshold voltage change, and the ratio of drain current in the presence and absence of biomolecules in JL nanotransistors. It is shown that asymmetric mode JL transistor achieves a higher degree of detection sensitivity even for a partially filled cavity. The work demonstrates the potential of JL channel architecture for cavity based dielectric modulated FET biosensors.
机译:在当前的工作中,我们证明了双门无结(JL)架构具有增强灵敏度的潜力,该灵敏度可用于检测腔调制场效应晶体管(FET)中的生物分子。利用在碰撞电离下的非对称门操作中获得的更高的体因子值,可提高感测裕度,这比对称模式操作高出近五倍。根据阈值电压变化以及在JL纳米晶体管中存在和不存在生物分子的情况下漏极电流的比率来评估固有检测灵敏度。结果表明,即使对于部分填充的空腔,非对称模式JL晶体管也可以实现更高的检测灵敏度。这项工作展示了基于腔的介电调制FET生物传感器的JL通道架构的潜力。

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