In this letter, an n-type short-channel negative capacitance FinFET (NC-FinFET) with a hysteresis window of 0.48 V, an on-/off-current ratio of 107, and a sub20-mV/decade average subthreshold slope (SSavg) that is intended to overcome the Boltzmann limit (i.e., the physical limit in the SS, which is 60 mV/decade at 300 K), is experimentally demonstrated vs. a baseline FinFET with an SSavgof ~105 mV/decade. In our testing, we confirmed that the large hysteresis window in a short-channel NC-FinFET can be suppressed by using an appropriate source/drain extension length (Lext). As Lextin the NC-FinFET is increased, the gate-to-source/drain capacitance (CGS/CGD) decreased and the hysteresis window narrows.
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Ko et al. (2017) studied this question.
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