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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Operation bandwidth of negative capacitance characterized by the frequency response of capacitance magnification in ferroelectric/dielectric stacks
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Operation bandwidth of negative capacitance characterized by the frequency response of capacitance magnification in ferroelectric/dielectric stacks

机译:负电容的操作带宽,其特征在于铁电/介质堆中电容倍率的频率响应

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摘要

The ferroelectric (FE) negative capacitance (NC) has emerged as a potential candidate for low-power electronics. In this study, we experimentally demonstrate the capacitance magnification of a paraelectric (PE) HfO2 capacitance (CHfO2) connected in series with a FE ZrO2 capacitance (CZrO2), which is higher than the value predicted by the series capacitance formula (CZrO2-1 + CHfO2-1)-1 and has a capacitance magnification ratio in the range 1.79-2.24. A model based on the switching of the net polarization in FE multi-domains is proposed to explain the capacitance magnification. In addition, the operation bandwidth of the NC effect was investigated by the frequency response of the capacitance magnification from 1 kHz to 10 GHz for the first time. The result reveals vanishing of the capacitance magnification at a frequency of about tens of megahertz, which suggests that the operation speed of NC is below similar to 100 MHz.
机译:铁电负电容(NC)已成为低功率电子学的潜在候选者。在这项研究中,我们通过实验证明了顺电(PE)HfO2电容(CHfO2)与FE-ZrO2电容(CZrO2)串联时的电容放大率,这比串联电容公式(CZrO2-1+CHfO2-1-1预测的值更高,电容放大率在1.79-2.24范围内。提出了一个基于铁多畴网络极化切换的模型来解释电容放大。此外,首次通过1 kHz至10 GHz的电容放大频率响应研究了NC效应的工作带宽。结果表明,在约几十兆赫的频率下,电容放大率消失,这表明NC的工作速度低于100兆赫。

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