Electric-polarization reversibility in nano-ferroelectric structures renders them as a convenient platform for exploring phase transitions and developing energy-efficient switching devices. However, the fundamental question of how ferroic domains switch, i.e. how the polarization changes from one state to another, is yet to be answered fully. There are contradicting models and a wide body of accumulated data which disagree as to whether the switching requires domain nucleation. Moreover, ferroelectric domains switch under electric fields that are supposedly too weak to form nucleation sites, indicating that the level of disorder seen in real systems plays an important role. This longstanding so-called Landauer's paradox is the ferroelectric...
Controlling the polarization switching in the ferroelectric nanocrystals, nanowires and nanodots has...
Molecules of low symmetry often self-assemble in Nature to produce mesoscopic structures of symmetry...
Understanding the electric polarization switching kinetics in ferroelectric materials is critical to...
Ferroelectric materials contain domains of ordered electric dipoles, separated by domain walls, that...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
Ferroelectric materials contain domains of ordered electric dipoles, separated by domain walls, that...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
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...
We present a model for reverse domain nucleation in ferroelectrics, which takes into account ferroel...
The Landau's sentence " Nobody can cancel the Coulomb's law " is often overlooked in understanding o...
Controlling the polarization switching in the ferroelectric nanocrystals, nanowires and nanodots has...
Molecules of low symmetry often self-assemble in Nature to produce mesoscopic structures of symmetry...
Understanding the electric polarization switching kinetics in ferroelectric materials is critical to...
Ferroelectric materials contain domains of ordered electric dipoles, separated by domain walls, that...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
Ferroelectric materials contain domains of ordered electric dipoles, separated by domain walls, that...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
Polarization switching is a fundamental feature of ferroelectric materials, enabling a plethora of a...
The unique response of ferroic materials to external excitations facilitates them for diverse techno...
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...
We present a model for reverse domain nucleation in ferroelectrics, which takes into account ferroel...
The Landau's sentence " Nobody can cancel the Coulomb's law " is often overlooked in understanding o...
Controlling the polarization switching in the ferroelectric nanocrystals, nanowires and nanodots has...
Molecules of low symmetry often self-assemble in Nature to produce mesoscopic structures of symmetry...
Understanding the electric polarization switching kinetics in ferroelectric materials is critical to...