English

Hidden Chiral Ferroelectricity in AgNbO$_3$ Perovskite

Materials Science 2026-02-24 v1

Abstract

AgNbO3_3 is a lead-free perovskite with considerable potential for energy storage and optoelectronic applications, yet its low-temperature crystal structure has remained controversial. In this Letter, we revisit its low-energy structural landscape using a systematic first-principles structural search based on symmetry-adapted phonon-mode theory. We uncover a previously unreported chiral ferroelectric phase with space group R3R3, which exhibits a large spontaneous polarization and a low polarization switching barrier, enabling polarization reversal under electric fields. Crucially, the structural chirality of this phase is intrinsically locked to the ferroelectric polarization, allowing electrical control of the chiral handedness. Consequently, chiral optical responses--including circular dichroism, circular photogalvanic effect, optical activity, and second-order nonlinear optics--can be reversibly switched by an external electric field. These results not only clarify the complex low-temperature structural behavior of AgNbO3_3 but also establish a rare purely inorganic platform for electric-field-tunable chirality, opening a pathway toward ultrafast, electrically controlled chiral optoelectronics.

Keywords

Cite

@article{arxiv.2602.19036,
  title  = {Hidden Chiral Ferroelectricity in AgNbO$_3$ Perovskite},
  author = {Ying Song and Lingzhi Cao and Jinming Zhai and Zhilong Yang and Yali Yang and Laurent Bellaiche and Jiangang He},
  journal= {arXiv preprint arXiv:2602.19036},
  year   = {2026}
}

Comments

7 pages, 4 figures