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Device modeling of ferroelectric capacitors

机译:铁电电容器的器件建模

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A physically based methodology is developed for modeling the behavior of electrical circuits containing nonideal ferroelectric capacitors. The methodology is illustrated by modeling the discrete ferroelectric capacitor as a stacked dielectric structure, with switching ferroelectric and nonswitching dielectric layers. Electrical properties of a modified Sawyer–Tower circuit are predicted by the model. Distortions of hysteresis loops due to resistive losses as a function of input signal frequency are accurately predicted by the model. The effect of signal amplitude variations predicted by the model also agree with experimental data. The model is used as a diagnostic tool to demonstrate that cycling degradation, at least for the sample investigated, cannot be modeled by the formation of nonswitching dielectric layer(s) or the formation of conductive regions near the electrodes, but is consistent with a spatially uniform reduction in the number of switching dipoles.
机译:开发了一种基于物理的方法,用于对包含非理想铁电电容器的电路的行为进行建模。该方法通过将分立式铁电电容器建模为堆叠的介电结构来说明,该结构具有开关铁电和非开关介电层。该模型预测了改进的 Sawyer-Tower 电路的电气特性。该模型可以准确预测由于电阻损耗与输入信号频率的函数关系而导致的滞后环路失真。模型预测的信号幅度变化的影响也与实验数据一致。该模型被用作诊断工具,以证明循环退化,至少对于所研究的样品而言,不能通过形成非开关介电层或电极附近形成导电区域来建模,但与开关偶极子数量的空间均匀减少一致。

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