Ferroelectric negative capacitance

被引:1
|
作者
Jorge Íñiguez
Pavlo Zubko
Igor Luk’yanchuk
Andrés Cano
机构
[1] Luxembourg Institute of Science and Technology (LIST),Materials Research and Technology Department
[2] University of Luxembourg,Physics and Materials Science Research Unit
[3] University College London,London Centre for Nanotechnology and Department of Physics and Astronomy
[4] University of Picardie,Laboratory of Condensed Matter Physics
[5] CNRS & Université Grenoble Alpes,Institut Néel
[6] ETH Zurich,Department of Materials
来源
Nature Reviews Materials | 2019年 / 4卷
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摘要
The capacitor is a key element of electronic devices and is characterized by positive capacitance. However, a negative capacitance (NC) behaviour may occur in certain cases and implies a local voltage drop opposed to the overall applied bias. Therefore, a local NC response results in voltage enhancement across the rest of the circuit. Within a suitably designed heterostructure, ferroelectrics display such an NC effect, and various ferroelectric-based microelectronic and nanoelectronic devices have been developed, showing improved performance attributed to NC. However, the exact physical nature of the NC response and direct experimental evidence remain elusive or controversial thus far. In this Review, we discuss the physical mechanisms responsible for ferroelectric NC, tackling static and transient NC responses. We examine ferroelectric responses to voltage and charge, as well as ferroelectric switching, and discuss proof-of-concept experiments and possibilities for device implementation. Finally, we highlight different approaches for the optimization of the intrinsic NC response to maximize voltage amplification.
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页码:243 / 256
页数:13
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