English

Dual mechanisms for transient capacitance anomaly in improper ferroelectrics

Materials Science 2025-09-09 v2

Abstract

The recent discovery of transient negative capacitance has sparked an intense debate on the role of homogeneous and inhomogeneous mechanisms in polarizations switching. In this work, we report observation of transient negative capacitance in improper ferroelectric h-YbFeO3 films in a resistor-capacitor circuit, and a concaved shape of anomaly in the voltage wave form, in the early and late stage of the polarizations switching respectively. Using a phenomenological model, we show that the early-stage negative capacitance is likely due to the inhomogeneous switching involving nucleation and domain wall motion, while the anomaly at the late stage, which appears to be a reminiscent negative capacitance is the manifestation of the thermodynamically unstable part of the free-energy landscape in the homogeneous switching. The complex free-energy landscape in hexagonal ferrites may be the key to cause the abrupt change in polarization switching speed and the corresponding anomaly. These results reconcile the two seemingly conflicting mechanisms in the polarization switching and highlight their different roles at different stages. The unique energy-landscape in hexagonal ferrites that reveals the dual switching mechanism suggests the promising application potential in terms of negative capacitance.

Keywords

Cite

@article{arxiv.2309.14639,
  title  = {Dual mechanisms for transient capacitance anomaly in improper ferroelectrics},
  author = {Xin Li and Yu Yun and Pratyush Buragohain and Arashdeep Singh Thind and Donald A. Walko and Detian Yang and Rohan Mishra and Alexei Gruverman and Xiaoshan Xu},
  journal= {arXiv preprint arXiv:2309.14639},
  year   = {2025}
}

Comments

14 pages,5 figures

R2 v1 2026-06-28T12:32:21.764Z