Ferroelectric domain walls are promising quasi-2D structures that can be leveraged for miniaturization of electronics components and new mechanisms to control electronic signals at the nanoscale. Despite the significant progress in experiment and theory, however, most investigations on ferroelectric domain walls are still on a fundamental level, and reliable characterization of emergent transport phenomena remains a challenging task. Here, we apply a neural-network-based approach to regularize local I(V)-spectroscopy measurements and improve the information extraction, using data recorded at charged domain walls in hexagonal (Er0.99,Zr0.01)MnO3 as an instructive example. Using a sparse long short-term memory autoencoder, we disentangle comp...
This repository contains the data and code used in the corresponding study: Maximizing Information: ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
Development of new generation electronic devices necessitates understanding and controlling the elec...
Ferroelectric domain walls are promising quasi-2D structures that can be leveraged for miniaturizati...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Ferroelectric domain walls are quasi-2D systems that show great promise for the development of nonvo...
Advanced scanning probe microscopies (SPMs) open up the possibilities of the next-generation ferroic...
The wealth of properties in functional materials at the nanoscale has attracted tremendous interest ...
Under the terms of the Creative Commons Attribution license.-- et al.High-resolution mapping of elec...
The ability to manipulate domains and domain walls underpins function in a range of next-generation ...
Conducting atomic force microscopy images of bulk semiconducting BaTiO3 surfaces show clear stripe d...
The ability to manipulate domains underpins function in applications of ferroelectrics. While there ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
High-resolution mapping of electronic transport phenomena plays an increasingly important role for t...
Local domain structures of ferroelectrics have been studied extensively using various modes of scann...
This repository contains the data and code used in the corresponding study: Maximizing Information: ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
Development of new generation electronic devices necessitates understanding and controlling the elec...
Ferroelectric domain walls are promising quasi-2D structures that can be leveraged for miniaturizati...
Domain walls are attracting significant interest in the field of (multi-)ferroic materials owing to ...
Ferroelectric domain walls are quasi-2D systems that show great promise for the development of nonvo...
Advanced scanning probe microscopies (SPMs) open up the possibilities of the next-generation ferroic...
The wealth of properties in functional materials at the nanoscale has attracted tremendous interest ...
Under the terms of the Creative Commons Attribution license.-- et al.High-resolution mapping of elec...
The ability to manipulate domains and domain walls underpins function in a range of next-generation ...
Conducting atomic force microscopy images of bulk semiconducting BaTiO3 surfaces show clear stripe d...
The ability to manipulate domains underpins function in applications of ferroelectrics. While there ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
High-resolution mapping of electronic transport phenomena plays an increasingly important role for t...
Local domain structures of ferroelectrics have been studied extensively using various modes of scann...
This repository contains the data and code used in the corresponding study: Maximizing Information: ...
The direct current (dc) conductivity and emergent functionalities at ferroelectric domain walls are ...
Development of new generation electronic devices necessitates understanding and controlling the elec...