Strong tunability of epitaxial relationship and reconstruction at improper ferroelectric interface

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Xin, Yun, Yu, Ren, Guodong, Thind, Arashdeep Singh, Shah, Amit Kumar, Mishra, Rohan, Xu, Xiaoshan
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916938624532480
author Li, Xin
Yun, Yu
Ren, Guodong
Thind, Arashdeep Singh
Shah, Amit Kumar
Mishra, Rohan
Xu, Xiaoshan
author_facet Li, Xin
Yun, Yu
Ren, Guodong
Thind, Arashdeep Singh
Shah, Amit Kumar
Mishra, Rohan
Xu, Xiaoshan
contents The atomic structures at epitaxial film-substrate interfaces determine scalability of thin films and can result in new phenomena. However, it is challenging to control the interfacial structures since they are decided by the most stable atomic bonding. In this work, we report strong tunability of the epitaxial interface of improper ferroelectric hexagonal ferrites deposited on spinel ferrites. The selection of two interface types, related by a 90 deg rotation of in-plane epitaxial relations and featured by disordered and hybridized reconstructions respectively, can be achieved by growth conditions, stacking sequences, and spinel compositions. While the disordered type suppresses the primary K3 structure distortion and ferroelectricity in hexagonal ferrites, the hybridized type is more coherent with the distortion with minimal suppression. This tunable interfacial structure provides critical insight on controlling interfacial clamping and may offer a solution for the long-standing problem of practical critical thickness in improper ferroelectrics.
format Preprint
id arxiv_https___arxiv_org_abs_2505_05265
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Strong tunability of epitaxial relationship and reconstruction at improper ferroelectric interface
Li, Xin
Yun, Yu
Ren, Guodong
Thind, Arashdeep Singh
Shah, Amit Kumar
Mishra, Rohan
Xu, Xiaoshan
Materials Science
The atomic structures at epitaxial film-substrate interfaces determine scalability of thin films and can result in new phenomena. However, it is challenging to control the interfacial structures since they are decided by the most stable atomic bonding. In this work, we report strong tunability of the epitaxial interface of improper ferroelectric hexagonal ferrites deposited on spinel ferrites. The selection of two interface types, related by a 90 deg rotation of in-plane epitaxial relations and featured by disordered and hybridized reconstructions respectively, can be achieved by growth conditions, stacking sequences, and spinel compositions. While the disordered type suppresses the primary K3 structure distortion and ferroelectricity in hexagonal ferrites, the hybridized type is more coherent with the distortion with minimal suppression. This tunable interfacial structure provides critical insight on controlling interfacial clamping and may offer a solution for the long-standing problem of practical critical thickness in improper ferroelectrics.
title Strong tunability of epitaxial relationship and reconstruction at improper ferroelectric interface
topic Materials Science
url https://arxiv.org/abs/2505.05265