Accurate compact nonlinear dynamical model for a volatile ferroelectric ZrO2 capacitor

Shiva Asapu, Taehwan Moon, Krishnamurthy Mahalingam, Kurt G. Eyink, James Nicolas Pagaduan, Ruoyu Zhao, Sabyasachi Ganguli, Reika Katsumata, Qiangfei Xia, R. Stanley Williams, J. Joshua Yang
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Abstract

We have measured the dynamical response of ZrO2 capacitors to applied triangular voltage waveforms with varying frequencies and amplitudes to determine the voltage and charge on the devices as a function of time. We have fit our experimental results to a Landau–Khalatnikov dynamical equation with a sixth order Landau–Ginzburg–Devonshire polynomial to represent the static charge-voltage behavior, and obtained coefficients of determination R2 > 0.99 for the fits. Analysis of the resulting quantitative model reveals an extremely small range of negative differential capacitance <16 mV. The hysteresis loops in the dynamical charge-voltage curves are found to result primarily from energy loss during the ferroelectric transitions, as represented by a frequency-dependent series resistance in the model.

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挥发性铁电 ZrO2 电容器的精确紧凑非线性动力学模型
我们测量了 ZrO2 电容器对不同频率和振幅的三角电压波形的动态响应,以确定器件上的电压和电荷随时间的变化。我们将实验结果与六阶 Landau-Ginzburg-Devonshire 多项式的 Landau-Khalatnikov 动力学方程进行拟合,以表示静态电荷-电压行为,并获得了拟合确定系数 R2 > 0.99。对所得定量模型的分析表明,负微分电容的范围极小,仅为 16 mV。研究发现,动态电荷-电压曲线中的滞后环主要是铁电转换过程中的能量损失造成的,在模型中表现为与频率相关的串联电阻。
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