Polarization switching in ferroelectric materials is governed by a delicate interplay between bulk polarization dynamics and screening processes at surfaces and domain walls. Here we explore the mechanism of tip-induced polarization switching at nonpolar cuts of uniaxial ferroelectrics. In this case, the in-plane component of the polarization vector switches, allowing for detailed observations of the resultant domain morphologies. We observe a surprising variability of resultant domain morphologies stemming from a fundamental instability of the formed charged domain wall and associated electric frustration. In particular, we demonstrate that controlling the vertical tip position allows the polarity of the switching to be controlled. This re...
Currently, ferroelectric materials with designed domain structures are considered as a perspective m...
Forward domain growth representing one of the main stages of domain switching is studied for isolate...
Electric-polarization reversibility in nano-ferroelectric structures renders them as a convenient pl...
Polarization switching in ferroelectric materials is governed by a delicate interplay between bulk p...
We have studied experimentally the interaction of isolated needle-like domains created in an array v...
Domain-wall dynamics in ferroic materials underpins functionality of data storage and information te...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Abstract: Electric switching of non-polar bulk crystals is shown to occur when domain walls are pola...
International audienceFerroelectric domain walls provide a fertile environment for novel materials p...
International audienceFerroelectric domain walls provide a fertile environment for novel materials p...
International audienceFerroelectric domain walls provide a fertile environment for novel materials p...
We report in situ transmission electron microscopy observations of the 180 degrees polarization swit...
Currently, ferroelectric materials with designed domain structures are considered as a perspective m...
Forward domain growth representing one of the main stages of domain switching is studied for isolate...
Electric-polarization reversibility in nano-ferroelectric structures renders them as a convenient pl...
Polarization switching in ferroelectric materials is governed by a delicate interplay between bulk p...
We have studied experimentally the interaction of isolated needle-like domains created in an array v...
Domain-wall dynamics in ferroic materials underpins functionality of data storage and information te...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
Abstract: Electric switching of non-polar bulk crystals is shown to occur when domain walls are pola...
International audienceFerroelectric domain walls provide a fertile environment for novel materials p...
International audienceFerroelectric domain walls provide a fertile environment for novel materials p...
International audienceFerroelectric domain walls provide a fertile environment for novel materials p...
We report in situ transmission electron microscopy observations of the 180 degrees polarization swit...
Currently, ferroelectric materials with designed domain structures are considered as a perspective m...
Forward domain growth representing one of the main stages of domain switching is studied for isolate...
Electric-polarization reversibility in nano-ferroelectric structures renders them as a convenient pl...