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Effects of Stress and Depolarization on Electrical Behaviors of Ferroelectric Field-Effect Transistor

机译:应力和去极化对铁电场效应晶体管电性能的影响

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The effects of stress and depolarization on current–voltage characteristics of ferroelectric field-effect transistor (FeFET) were investigated by Landau–Khalatnikov theory in conjunction with Pao and Sah's model. Output characteristics current increases under compressive stress but decreases under tensile stress. Transfer characteristics curve is enlarged by compressive stress but compressed by tensile stress, and it shifts to the negative voltage axis under compressive stress gradient while to the opposite direction under tensile stress gradient. Because of depolarization, output characteristics current is obviously affected, and transfer characteristics curve is seriously distorted. These results show that stress and depolarization should be considered in device design to prevent failure of FeFET.
机译:利用Landau-Khalatnikov理论,结合Pao和Sah模型,研究了应力和去极化对铁电场效应晶体管(FeFET)电流-电压特性的影响。输出特性电流在压应力下会增加,但在拉应力下会下降。传递特性曲线在压应力作用下增大,而在拉应力作用下压缩,在压应力梯度作用下向负电压轴移动,在拉应力梯度作用下向相反方向移动。由于去极化,输出特性电流受到明显影响,传输特性曲线严重失真。这些结果表明,在器件设计中应考虑应力和去极化,以防止FeFET失效。

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